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Erschienen in: Acta Neuropathologica 1/2009

01.07.2009 | Review

Classification and basic pathology of Alzheimer disease

verfasst von: Charles Duyckaerts, Benoît Delatour, Marie-Claude Potier

Erschienen in: Acta Neuropathologica | Ausgabe 1/2009

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Abstract

The lesions of Alzheimer disease include accumulation of proteins, losses of neurons and synapses, and alterations related to reactive processes. Extracellular Aβ accumulation occurs in the parenchyma as diffuse, focal or stellate deposits. It may involve the vessel walls of arteries, veins and capillaries. The cases in which the capillary vessel walls are affected have a higher probability of having one or two apoε 4 alleles. Parenchymal as well as vascular Aβ deposition follows a stepwise progression. Tau accumulation, probably the best histopathological correlate of the clinical symptoms, takes three aspects: in the cell body of the neuron as neurofibrillary tangle, in the dendrites as neuropil threads, and in the axons forming the senile plaque neuritic corona. The progression of tau pathology is stepwise and stereotyped from the entorhinal cortex, through the hippocampus, to the isocortex. The neuronal loss is heterogeneous and area-specific. Its mechanism is still discussed. The timing of the synaptic loss, probably linked to Aβ peptide itself, maybe as oligomers, is also controversial. Various clinico-pathological types of Alzheimer disease have been described, according to the type of the lesions (plaque only and tangle predominant), the type of onset (focal onset), the cause (genetic or sporadic) and the associated lesions (Lewy bodies, vascular lesions, hippocampal sclerosis, TDP-43 inclusions and argyrophilic grain disease).
Literatur
1.
Zurück zum Zitat Abraham CR, Selkoe DJ, Potter H (1988) Immunochemical identification of the serine protease inhibitor α-1 antichymotrypsin in the brain amyloid deposits of Alzheimer’s disease. Cell 52:487–501. doi:10.1016/0092-8674(88)90462-X PubMed Abraham CR, Selkoe DJ, Potter H (1988) Immunochemical identification of the serine protease inhibitor α-1 antichymotrypsin in the brain amyloid deposits of Alzheimer’s disease. Cell 52:487–501. doi:10.​1016/​0092-8674(88)90462-X PubMed
2.
Zurück zum Zitat Adalbert R, Nogradi A, Babetto E, Janeckova L, Walker SA, Kerschensteiner M, Misgeld T, Coleman MP (2009) Severely dystrophic axons at amyloid plaques remain continuous and connected to viable cell bodies. Brain 132:402–416. doi:10.1093/brain/awn312 PubMed Adalbert R, Nogradi A, Babetto E, Janeckova L, Walker SA, Kerschensteiner M, Misgeld T, Coleman MP (2009) Severely dystrophic axons at amyloid plaques remain continuous and connected to viable cell bodies. Brain 132:402–416. doi:10.​1093/​brain/​awn312 PubMed
4.
Zurück zum Zitat Alafuzoff I, Arzberger T, Al-Sarraj S, Bodi I, Bogdanovic N, Braak H, Bugiani O, Del-Tredici K, Ferrer I, Gelpi E, Giaccone G, Graeber MB, Ince P, Kamphorst W, King A, Korkolopoulou P, Kovacs GG, Larionov S, Meyronet D, Monoranu C, Parchi P, Patsouris E, Roggendorf W, Seilhean D, Tagliavini F, Stadelmann C, Streichenberger N, Thal DR, Wharton SB, Kretzschmar H (2008) Staging of neurofibrillary pathology in Alzheimer’s disease: a study of the BrainNet Europe Consortium. Brain Pathol 18:484–496PubMed Alafuzoff I, Arzberger T, Al-Sarraj S, Bodi I, Bogdanovic N, Braak H, Bugiani O, Del-Tredici K, Ferrer I, Gelpi E, Giaccone G, Graeber MB, Ince P, Kamphorst W, King A, Korkolopoulou P, Kovacs GG, Larionov S, Meyronet D, Monoranu C, Parchi P, Patsouris E, Roggendorf W, Seilhean D, Tagliavini F, Stadelmann C, Streichenberger N, Thal DR, Wharton SB, Kretzschmar H (2008) Staging of neurofibrillary pathology in Alzheimer’s disease: a study of the BrainNet Europe Consortium. Brain Pathol 18:484–496PubMed
5.
Zurück zum Zitat Alafuzoff I, Pikkarainen M, Arzberger T, Thal DR, Al-Sarraj S, Bell J, Bodi I, Budka H, Capetillo-Zarate E, Ferrer I, Gelpi E, Gentleman S, Giaccone G, Kavantzas N, King A, Korkolopoulou P, Kovacs GG, Meyronet D, Monoranu C, Parchi P, Patsouris E, Roggendorf W, Stadelmann C, Streichenberger N, Tagliavini F, Kretzschmar H (2008) Inter-laboratory comparison of neuropathological assessments of beta-amyloid protein: a study of the BrainNet Europe consortium. Acta Neuropathol 115:533–546. doi:10.1007/s00401-008-0358-2 PubMed Alafuzoff I, Pikkarainen M, Arzberger T, Thal DR, Al-Sarraj S, Bell J, Bodi I, Budka H, Capetillo-Zarate E, Ferrer I, Gelpi E, Gentleman S, Giaccone G, Kavantzas N, King A, Korkolopoulou P, Kovacs GG, Meyronet D, Monoranu C, Parchi P, Patsouris E, Roggendorf W, Stadelmann C, Streichenberger N, Tagliavini F, Kretzschmar H (2008) Inter-laboratory comparison of neuropathological assessments of beta-amyloid protein: a study of the BrainNet Europe consortium. Acta Neuropathol 115:533–546. doi:10.​1007/​s00401-008-0358-2 PubMed
7.
Zurück zum Zitat Alladi S, Xuereb J, Bak T, Nestor P, Knibb J, Patterson K, Hodges JR (2007) Focal cortical presentations of Alzheimer’s disease. Brain 130:2636–2645. doi:10.1093/brain/awm213 PubMed Alladi S, Xuereb J, Bak T, Nestor P, Knibb J, Patterson K, Hodges JR (2007) Focal cortical presentations of Alzheimer’s disease. Brain 130:2636–2645. doi:10.​1093/​brain/​awm213 PubMed
9.
Zurück zum Zitat Amador-Ortiz C, Lin WL, Ahmed Z, Personett D, Davies P, Duara R, Graff-Radford NR, Hutton ML, Dickson DW (2007) TDP-43 immunoreactivity in hippocampal sclerosis and Alzheimer’s disease. Ann Neurol 61:435–445. doi:10.1002/ana.21154 PubMed Amador-Ortiz C, Lin WL, Ahmed Z, Personett D, Davies P, Duara R, Graff-Radford NR, Hutton ML, Dickson DW (2007) TDP-43 immunoreactivity in hippocampal sclerosis and Alzheimer’s disease. Ann Neurol 61:435–445. doi:10.​1002/​ana.​21154 PubMed
10.
Zurück zum Zitat Anderson AJ, Stoltzner S, Lai F, Su J, Nixon RA (2000) Morphological and biochemical assessment of DNA damage and apoptosis in Down syndrome and Alzheimer disease, and effect of postmortem tissue archival on TUNEL. Neurobiol Aging 21:511–524. doi:10.1016/S0197-4580(00)00126-3 PubMed Anderson AJ, Stoltzner S, Lai F, Su J, Nixon RA (2000) Morphological and biochemical assessment of DNA damage and apoptosis in Down syndrome and Alzheimer disease, and effect of postmortem tissue archival on TUNEL. Neurobiol Aging 21:511–524. doi:10.​1016/​S0197-4580(00)00126-3 PubMed
11.
Zurück zum Zitat Anderton BH, Breinburg D, Downes MJ, Green PJ, Tomlinson BE, Ulrich J, Wood JN, Kahn J (1982) Monoclonal antibodies show that neurofibrillary tangles and neurofilaments share antigenic determinants. Nature 298:84–86. doi:10.1038/298084a0 PubMed Anderton BH, Breinburg D, Downes MJ, Green PJ, Tomlinson BE, Ulrich J, Wood JN, Kahn J (1982) Monoclonal antibodies show that neurofibrillary tangles and neurofilaments share antigenic determinants. Nature 298:84–86. doi:10.​1038/​298084a0 PubMed
13.
Zurück zum Zitat Anheim M, Hannequin D, Boulay C, Martin C, Campion D, Tranchant C (2007) Ataxic variant of Alzheimer’s disease caused by Pro117Ala PSEN1 mutation. J Neurol Neurosurg Psychiatry 78:1414–1415. doi:10.1136/jnnp.2007.123026 PubMed Anheim M, Hannequin D, Boulay C, Martin C, Campion D, Tranchant C (2007) Ataxic variant of Alzheimer’s disease caused by Pro117Ala PSEN1 mutation. J Neurol Neurosurg Psychiatry 78:1414–1415. doi:10.​1136/​jnnp.​2007.​123026 PubMed
14.
Zurück zum Zitat Aoki M, Volkmann I, Tjernberg LO, Winblad B, Bogdanovic N (2008) Amyloid beta-peptide levels in laser capture microdissected cornu ammonis 1 pyramidal neurons of Alzheimer’s brain. Neuroreport 19:1085–1089PubMed Aoki M, Volkmann I, Tjernberg LO, Winblad B, Bogdanovic N (2008) Amyloid beta-peptide levels in laser capture microdissected cornu ammonis 1 pyramidal neurons of Alzheimer’s brain. Neuroreport 19:1085–1089PubMed
15.
16.
17.
18.
Zurück zum Zitat Arendt T, Bigl V, Arendt A, Tennstedt A (1983) Loss of neurons in the nucleus basalis of Meynert in Alzheimer’s disease, paralysis agitans and Korsakoff’s disease. Acta Neuropathol 61:101–108. doi:10.1007/BF00697388 PubMed Arendt T, Bigl V, Arendt A, Tennstedt A (1983) Loss of neurons in the nucleus basalis of Meynert in Alzheimer’s disease, paralysis agitans and Korsakoff’s disease. Acta Neuropathol 61:101–108. doi:10.​1007/​BF00697388 PubMed
19.
Zurück zum Zitat Arendt T, Zvegintseva HG, Leontovich TA (1986) Dendritic changes in the basal nucleus of Meynert and in the diagonal band in Alzheimer disease. A quantitative Golgi investigation. Neuroscience 19:1265–1278. doi:10.1016/0306-4522(86)90141-7 PubMed Arendt T, Zvegintseva HG, Leontovich TA (1986) Dendritic changes in the basal nucleus of Meynert and in the diagonal band in Alzheimer disease. A quantitative Golgi investigation. Neuroscience 19:1265–1278. doi:10.​1016/​0306-4522(86)90141-7 PubMed
20.
Zurück zum Zitat Aronica E, Dickson DW, Kress Y, Morrison JH, Zukin RS (1998) Non-plaque dystrophic dendrites in Alzheimer hippocampus: a new pathological structure revealed by glutamate receptor immunocytochemistry. Neuroscience 82:979–991. doi:10.1016/S0306-4522(97)00260-1 PubMed Aronica E, Dickson DW, Kress Y, Morrison JH, Zukin RS (1998) Non-plaque dystrophic dendrites in Alzheimer hippocampus: a new pathological structure revealed by glutamate receptor immunocytochemistry. Neuroscience 82:979–991. doi:10.​1016/​S0306-4522(97)00260-1 PubMed
21.
23.
Zurück zum Zitat Attems J, Jellinger KA (2006) Olfactory tau pathology in Alzheimer disease and mild cognitive impairment. Clin Neuropathol 25:265–271PubMed Attems J, Jellinger KA (2006) Olfactory tau pathology in Alzheimer disease and mild cognitive impairment. Clin Neuropathol 25:265–271PubMed
24.
Zurück zum Zitat Attems J, Jellinger KA, Lintner F (2005) Alzheimer’s disease pathology influences severity and topographical distribution of cerebral amyloid angiopathy. Acta Neuropathol 110:222–231. doi:10.1007/s00401-005-1064-y PubMed Attems J, Jellinger KA, Lintner F (2005) Alzheimer’s disease pathology influences severity and topographical distribution of cerebral amyloid angiopathy. Acta Neuropathol 110:222–231. doi:10.​1007/​s00401-005-1064-y PubMed
25.
Zurück zum Zitat Attems J, Lauda F, Jellinger KA (2008) Unexpectedly low prevalence of intracerebral hemorrhages in sporadic cerebral amyloid angiopathy: an autopsy study. J Neurol 255:70–76. doi:10.1007/s00415-008-0674-4 PubMed Attems J, Lauda F, Jellinger KA (2008) Unexpectedly low prevalence of intracerebral hemorrhages in sporadic cerebral amyloid angiopathy: an autopsy study. J Neurol 255:70–76. doi:10.​1007/​s00415-008-0674-4 PubMed
26.
Zurück zum Zitat Attems J, Preusser M, Grosinger-Quass M, Wagner L, Lintner F, Jellinger K (2008) Calcium-binding protein secretagogin-expressing neurones in the human hippocampus are largely resistant to neurodegeneration in Alzheimer’s disease. Neuropathol Appl Neurobiol 34:23–32PubMed Attems J, Preusser M, Grosinger-Quass M, Wagner L, Lintner F, Jellinger K (2008) Calcium-binding protein secretagogin-expressing neurones in the human hippocampus are largely resistant to neurodegeneration in Alzheimer’s disease. Neuropathol Appl Neurobiol 34:23–32PubMed
27.
Zurück zum Zitat Attems J, Quass M, Jellinger KA (2007) Tau and alpha-synuclein brainstem pathology in Alzheimer disease: relation with extrapyramidal signs. Acta Neuropathol 113:53–62. doi:10.1007/s00401-006-0146-9 PubMed Attems J, Quass M, Jellinger KA (2007) Tau and alpha-synuclein brainstem pathology in Alzheimer disease: relation with extrapyramidal signs. Acta Neuropathol 113:53–62. doi:10.​1007/​s00401-006-0146-9 PubMed
28.
Zurück zum Zitat Attems J, Quass M, Jellinger KA, Lintner F (2007) Topographical distribution of cerebral amyloid angiopathy and its effect on cognitive decline are influenced by Alzheimer disease pathology. J Neurol Sci 257:49–55. doi:10.1016/j.jns.2007.01.013 PubMed Attems J, Quass M, Jellinger KA, Lintner F (2007) Topographical distribution of cerebral amyloid angiopathy and its effect on cognitive decline are influenced by Alzheimer disease pathology. J Neurol Sci 257:49–55. doi:10.​1016/​j.​jns.​2007.​01.​013 PubMed
29.
Zurück zum Zitat Bancher C, Brunner C, Lassmann H, Budka H, Jellinger K, Wiche G, Seitelberger F, Grundke-Iqbal I, Iqbal K, Wisniewski HM (1989) Accumulation of abnormally phosphorylated tau precedes the formation of neurofibrillary tangles in Alzheimer’s disease. Brain Res 477:90–99. doi:10.1016/0006-8993(89)91396-6 PubMed Bancher C, Brunner C, Lassmann H, Budka H, Jellinger K, Wiche G, Seitelberger F, Grundke-Iqbal I, Iqbal K, Wisniewski HM (1989) Accumulation of abnormally phosphorylated tau precedes the formation of neurofibrillary tangles in Alzheimer’s disease. Brain Res 477:90–99. doi:10.​1016/​0006-8993(89)91396-6 PubMed
30.
Zurück zum Zitat Bancher C, Egensperger R, Kosel S, Jellinger K, Graeber MB (1997) Low prevalence of apolipoprotein E epsilon 4 allele in the neurofibrillary tangle predominant form of senile dementia. Acta Neuropathol 94:403–409. doi:10.1007/s004010050726 PubMed Bancher C, Egensperger R, Kosel S, Jellinger K, Graeber MB (1997) Low prevalence of apolipoprotein E epsilon 4 allele in the neurofibrillary tangle predominant form of senile dementia. Acta Neuropathol 94:403–409. doi:10.​1007/​s004010050726 PubMed
31.
Zurück zum Zitat Bancher C, Jellinger K, Lassmann H, Fischer P, Leblhuber F (1996) Correlations between mental state and quantitative neuropathology in the Vienna Longitudinal Study on Dementia. Eur Arch Psychiatry Clin Neurosci 246:137–146. doi:10.1007/BF02189115 PubMed Bancher C, Jellinger K, Lassmann H, Fischer P, Leblhuber F (1996) Correlations between mental state and quantitative neuropathology in the Vienna Longitudinal Study on Dementia. Eur Arch Psychiatry Clin Neurosci 246:137–146. doi:10.​1007/​BF02189115 PubMed
32.
Zurück zum Zitat Bancher C, Jellinger KA (1994) Neurofibrillary tangle predominant form of senile dementia of Alzheimer type: a rare subtype in very old subjects. Acta Neuropathol 88:565–570. doi:10.1007/BF00296494 PubMed Bancher C, Jellinger KA (1994) Neurofibrillary tangle predominant form of senile dementia of Alzheimer type: a rare subtype in very old subjects. Acta Neuropathol 88:565–570. doi:10.​1007/​BF00296494 PubMed
33.
Zurück zum Zitat Barelli H, Lebeau A, Vizzavona J, Delaere P, Chevallier N, Drouot C, Marambaud P, Ancolio K, Buxbaum JD, Khorkova O, Heroux J, Sahasrabudhe S, Martinez J, Warter JM, Mohr M, Checler F (1997) Characterization of new polyclonal antibodies specific for 40 and 42 amino acid-long amyloid beta peptides: their use to examine the cell biology of presenilins and the immunohistochemistry of sporadic Alzheimer’s disease and cerebral amyloid angiopathy cases. Mol Med 3:695–707PubMed Barelli H, Lebeau A, Vizzavona J, Delaere P, Chevallier N, Drouot C, Marambaud P, Ancolio K, Buxbaum JD, Khorkova O, Heroux J, Sahasrabudhe S, Martinez J, Warter JM, Mohr M, Checler F (1997) Characterization of new polyclonal antibodies specific for 40 and 42 amino acid-long amyloid beta peptides: their use to examine the cell biology of presenilins and the immunohistochemistry of sporadic Alzheimer’s disease and cerebral amyloid angiopathy cases. Mol Med 3:695–707PubMed
35.
Zurück zum Zitat Berg L, McKeel DWJ, Miller JP, Storandt M, Rubin EH, Morris JC, Baty J, Coats M, Norton J, Goate AM, Price JL, Gearing M, Mirra SS, Saunders AM (1998) Clinicopathologic studies in cognitively healthy aging and Alzheimer’s disease: relation of histologic markers to dementia severity, age, sex, and apolipoprotein E genotype. Arch Neurol 55:326–335. doi:10.1001/archneur.55.3.326 PubMed Berg L, McKeel DWJ, Miller JP, Storandt M, Rubin EH, Morris JC, Baty J, Coats M, Norton J, Goate AM, Price JL, Gearing M, Mirra SS, Saunders AM (1998) Clinicopathologic studies in cognitively healthy aging and Alzheimer’s disease: relation of histologic markers to dementia severity, age, sex, and apolipoprotein E genotype. Arch Neurol 55:326–335. doi:10.​1001/​archneur.​55.​3.​326 PubMed
36.
Zurück zum Zitat Berriman J, Serpell LC, Oberg KA, Fink AL, Goedert M, Crowther RA (2003) Tau filaments from human brain and from in vitro assembly of recombinant protein show cross-beta structure. Proc Natl Acad Sci USA 100:9034–9038. doi:10.1073/pnas.1530287100 PubMed Berriman J, Serpell LC, Oberg KA, Fink AL, Goedert M, Crowther RA (2003) Tau filaments from human brain and from in vitro assembly of recombinant protein show cross-beta structure. Proc Natl Acad Sci USA 100:9034–9038. doi:10.​1073/​pnas.​1530287100 PubMed
37.
Zurück zum Zitat Bierer LM, Hof PR, Purohit DP, Carlin L, Schmeidler J, Davis KL, Perl DP (1995) Neocortical neurofibrillary tangles correlate with dementia severity in Alzheimer’s disease. Arch Neurol 52:81–88PubMed Bierer LM, Hof PR, Purohit DP, Carlin L, Schmeidler J, Davis KL, Perl DP (1995) Neocortical neurofibrillary tangles correlate with dementia severity in Alzheimer’s disease. Arch Neurol 52:81–88PubMed
38.
Zurück zum Zitat Blessed G, Tomlinson BE, Roth M (1968) The association between quantitative measures of dementia and of senile change in the cerebral grey matter of elderly subjects. Br J Psychiatry 114:797–811. doi:10.1192/bjp.114.512.797 PubMed Blessed G, Tomlinson BE, Roth M (1968) The association between quantitative measures of dementia and of senile change in the cerebral grey matter of elderly subjects. Br J Psychiatry 114:797–811. doi:10.​1192/​bjp.​114.​512.​797 PubMed
40.
Zurück zum Zitat Boller F, Mizutani R, Roessmann U, Gambetti P (1980) Parkinson’s disease, dementia and Alzheimer’s disease: clinico-pathological correlations. Ann Neurol 1:329–355. doi:10.1002/ana.410070408 Boller F, Mizutani R, Roessmann U, Gambetti P (1980) Parkinson’s disease, dementia and Alzheimer’s disease: clinico-pathological correlations. Ann Neurol 1:329–355. doi:10.​1002/​ana.​410070408
41.
Zurück zum Zitat Braak E, Braak H, Mandelkow EM (1994) A sequence of cytoskeleton changes related to the formation of neurofibrillary tangles and neuropil threads. Acta Neuropathol 87:554–567. doi:10.1007/BF00293315 PubMed Braak E, Braak H, Mandelkow EM (1994) A sequence of cytoskeleton changes related to the formation of neurofibrillary tangles and neuropil threads. Acta Neuropathol 87:554–567. doi:10.​1007/​BF00293315 PubMed
42.
Zurück zum Zitat Braak H, Alafuzoff I, Arzberger T, Kretzschmar H, Del Tredici K (2006) Staging of Alzheimer disease-associated neurofibrillary pathology using paraffin sections and immunocytochemistry. Acta Neuropathol 112:389–404. doi:10.1007/s00401-006-0127-z PubMed Braak H, Alafuzoff I, Arzberger T, Kretzschmar H, Del Tredici K (2006) Staging of Alzheimer disease-associated neurofibrillary pathology using paraffin sections and immunocytochemistry. Acta Neuropathol 112:389–404. doi:10.​1007/​s00401-006-0127-z PubMed
43.
Zurück zum Zitat Braak H, Braak E (1985) On areas of transition between entorhinal allocortex and temporal isocortex in the human brain. Normal morphology and lamina-specific pathology in Alzheimer’s disease. Acta Neuropathol 68:325–332. doi:10.1007/BF00690836 PubMed Braak H, Braak E (1985) On areas of transition between entorhinal allocortex and temporal isocortex in the human brain. Normal morphology and lamina-specific pathology in Alzheimer’s disease. Acta Neuropathol 68:325–332. doi:10.​1007/​BF00690836 PubMed
46.
Zurück zum Zitat Braak H, Braak E (1990) Neurofibrillary changes confined to the entorhinal region and abundance of cortical amyloid in cases of presenile and senile dementia. Acta Neuropathol 80:479–486. doi:10.1007/BF00294607 PubMed Braak H, Braak E (1990) Neurofibrillary changes confined to the entorhinal region and abundance of cortical amyloid in cases of presenile and senile dementia. Acta Neuropathol 80:479–486. doi:10.​1007/​BF00294607 PubMed
49.
Zurück zum Zitat Braak H, Braak E, Grundke-Iqbal I, Iqbal K (1986) Occurence of neuropil threads in the senile human brain and in Alzheimer’s disease. A 3rd location of paired helical filaments outside of neurofilament tangles and neuritic plaques. Neurosci Lett 65:351–355. doi:10.1016/0304-3940(86)90288-0 PubMed Braak H, Braak E, Grundke-Iqbal I, Iqbal K (1986) Occurence of neuropil threads in the senile human brain and in Alzheimer’s disease. A 3rd location of paired helical filaments outside of neurofilament tangles and neuritic plaques. Neurosci Lett 65:351–355. doi:10.​1016/​0304-3940(86)90288-0 PubMed
50.
Zurück zum Zitat Braak H, Duyckaerts C, Braak E, Piette F (1993) Neuropathological staging of Alzheimer-related changes correlates with psychometrically assessed intellectual status. In: Corain B, Iqbal K, Nicolini M, Winblad B, Wisniewskiet H, Zatta P (eds) Alzheimer’s disease: advances in clinical and basic research. Wiley, Chichester, pp 131–137 Braak H, Duyckaerts C, Braak E, Piette F (1993) Neuropathological staging of Alzheimer-related changes correlates with psychometrically assessed intellectual status. In: Corain B, Iqbal K, Nicolini M, Winblad B, Wisniewskiet H, Zatta P (eds) Alzheimer’s disease: advances in clinical and basic research. Wiley, Chichester, pp 131–137
51.
Zurück zum Zitat Brion JP, Passareiro H, Nunez J, Flament-Durand J (1985) Mise en évidence immunologique de la protéine tau au niveau des lésions de dégénérescence neurofibrillaire de la maladie d’Alzheimer. Arch Biol Brux 95:229–235 Brion JP, Passareiro H, Nunez J, Flament-Durand J (1985) Mise en évidence immunologique de la protéine tau au niveau des lésions de dégénérescence neurofibrillaire de la maladie d’Alzheimer. Arch Biol Brux 95:229–235
52.
Zurück zum Zitat Brion JP, Smith C, Couck AM, Gallo JM, Anderton BH (1993) Developmental changes in tau phosphorylation: fetal tau is transiently phosphorylated in a manner similar to paired helical filament-tau characteristic of Alzheimer’s disease. J Neurochem 61:2071–2080. doi:10.1111/j.1471-4159.1993.tb07444.x PubMed Brion JP, Smith C, Couck AM, Gallo JM, Anderton BH (1993) Developmental changes in tau phosphorylation: fetal tau is transiently phosphorylated in a manner similar to paired helical filament-tau characteristic of Alzheimer’s disease. J Neurochem 61:2071–2080. doi:10.​1111/​j.​1471-4159.​1993.​tb07444.​x PubMed
53.
Zurück zum Zitat Broe M, Shepherd CE, Milward EA, Halliday GM (2001) Relationship between DNA fragmentation, morphological changes and neuronal loss in Alzheimer’s disease and dementia with Lewy bodies. Acta Neuropathol 101:616–624PubMed Broe M, Shepherd CE, Milward EA, Halliday GM (2001) Relationship between DNA fragmentation, morphological changes and neuronal loss in Alzheimer’s disease and dementia with Lewy bodies. Acta Neuropathol 101:616–624PubMed
54.
Zurück zum Zitat Buée L, Hof PR, Roberts DD, Delacourte A, Morrison JH, Fillit HM (1992) Immunohistochemical Identification of thrombospondin in normal human brain and in Alzheimer’s disease. Am J Pathol 141:783–788PubMed Buée L, Hof PR, Roberts DD, Delacourte A, Morrison JH, Fillit HM (1992) Immunohistochemical Identification of thrombospondin in normal human brain and in Alzheimer’s disease. Am J Pathol 141:783–788PubMed
55.
Zurück zum Zitat Buldyrev SV, Cruz L, Gomez-Isla T, Gomez-Tortosa E, Havlin S, Le R, Stanley HE, Urbanc B, Hyman BT (2000) Description of microcolumnar ensembles in association cortex and their disruption in Alzheimer and Lewy body dementias. Proc Natl Acad Sci USA 97:5039–5043. doi:10.1073/pnas.060009897 PubMed Buldyrev SV, Cruz L, Gomez-Isla T, Gomez-Tortosa E, Havlin S, Le R, Stanley HE, Urbanc B, Hyman BT (2000) Description of microcolumnar ensembles in association cortex and their disruption in Alzheimer and Lewy body dementias. Proc Natl Acad Sci USA 97:5039–5043. doi:10.​1073/​pnas.​060009897 PubMed
56.
Zurück zum Zitat Burns JM, Galvin JE, Roe CM, Morris JC, McKeel DW (2005) The pathology of the substantia nigra in Alzheimer disease with extrapyramidal signs. Neurology 64:1397–1403PubMed Burns JM, Galvin JE, Roe CM, Morris JC, McKeel DW (2005) The pathology of the substantia nigra in Alzheimer disease with extrapyramidal signs. Neurology 64:1397–1403PubMed
57.
Zurück zum Zitat Burns MP, Noble WJ, Olm V, Gaynor K, Casey E, LaFrancois J, Wang L, Duff K (2003) Co-localization of cholesterol, apolipoprotein E and fibrillar Abeta in amyloid plaques. Brain Res Mol Brain Res 110:119–125. doi:10.1016/S0169-328X(02)00647-2 PubMed Burns MP, Noble WJ, Olm V, Gaynor K, Casey E, LaFrancois J, Wang L, Duff K (2003) Co-localization of cholesterol, apolipoprotein E and fibrillar Abeta in amyloid plaques. Brain Res Mol Brain Res 110:119–125. doi:10.​1016/​S0169-328X(02)00647-2 PubMed
59.
Zurück zum Zitat Bussiere T, Friend PD, Sadeghi N, Wicinski B, Lin GI, Bouras C, Giannakopoulos P, Robakis NK, Morrison JH, Perl DP, Hof PR (2002) Stereologic assessment of the total cortical volume occupied by amyloid deposits and its relationship with cognitive status in aging and Alzheimer’s disease. Neuroscience 112:75–91. doi:10.1016/S0306-4522(02)00056-8 PubMed Bussiere T, Friend PD, Sadeghi N, Wicinski B, Lin GI, Bouras C, Giannakopoulos P, Robakis NK, Morrison JH, Perl DP, Hof PR (2002) Stereologic assessment of the total cortical volume occupied by amyloid deposits and its relationship with cognitive status in aging and Alzheimer’s disease. Neuroscience 112:75–91. doi:10.​1016/​S0306-4522(02)00056-8 PubMed
60.
Zurück zum Zitat Cabrejo L, Guyant-Marechal L, Laquerriere A, Vercelletto M, De la Fourniere F, Thomas-Anterion C, Verny C, Letournel F, Pasquier F, Vital A, Checler F, Frebourg T, Campion D, Hannequin D (2006) Phenotype associated with APP duplication in five families. Brain 129:2966–2976. doi:10.1093/brain/awl237 PubMed Cabrejo L, Guyant-Marechal L, Laquerriere A, Vercelletto M, De la Fourniere F, Thomas-Anterion C, Verny C, Letournel F, Pasquier F, Vital A, Checler F, Frebourg T, Campion D, Hannequin D (2006) Phenotype associated with APP duplication in five families. Brain 129:2966–2976. doi:10.​1093/​brain/​awl237 PubMed
61.
Zurück zum Zitat Cairns NJ, Chadwick A, Luthert PJ, Lantos PL (1992) Astrocytosis, beta A4-protein deposition and paired helical filament formation in Alzheimer’s disease. J Neurol Sci 112:68–75. doi:10.1016/0022-510X(92)90134-7 PubMed Cairns NJ, Chadwick A, Luthert PJ, Lantos PL (1992) Astrocytosis, beta A4-protein deposition and paired helical filament formation in Alzheimer’s disease. J Neurol Sci 112:68–75. doi:10.​1016/​0022-510X(92)90134-7 PubMed
62.
Zurück zum Zitat Cajal SR (1928) Degeneration and regeneration of the nervous system. Oxford University Press, London Cajal SR (1928) Degeneration and regeneration of the nervous system. Oxford University Press, London
63.
64.
Zurück zum Zitat Casas C, Sergeant N, Itier JM, Blanchard V, Wirths O, van der Kolk N, Vingtdeux V, van de Steeg E, Ret G, Canton T, Drobecq H, Clark A, Bonici B, Delacourte A, Benavides J, Schmitz C, Tremp G, Bayer TA, Benoit P, Pradier L (2004) Massive CA1/2 neuronal loss with intraneuronal and N-terminal truncated Abeta42 accumulation in a novel Alzheimer transgenic model. Am J Pathol 165:1289–1300PubMed Casas C, Sergeant N, Itier JM, Blanchard V, Wirths O, van der Kolk N, Vingtdeux V, van de Steeg E, Ret G, Canton T, Drobecq H, Clark A, Bonici B, Delacourte A, Benavides J, Schmitz C, Tremp G, Bayer TA, Benoit P, Pradier L (2004) Massive CA1/2 neuronal loss with intraneuronal and N-terminal truncated Abeta42 accumulation in a novel Alzheimer transgenic model. Am J Pathol 165:1289–1300PubMed
66.
Zurück zum Zitat Christensen DZ, Kraus SL, Flohr A, Cotel MC, Wirths O, Bayer TA (2008) Transient intraneuronal A beta rather than extracellular plaque pathology correlates with neuron loss in the frontal cortex of APP/PS1KI mice. Acta Neuropathol 116:647–655. doi:10.1007/s00401-008-0451-6 PubMed Christensen DZ, Kraus SL, Flohr A, Cotel MC, Wirths O, Bayer TA (2008) Transient intraneuronal A beta rather than extracellular plaque pathology correlates with neuron loss in the frontal cortex of APP/PS1KI mice. Acta Neuropathol 116:647–655. doi:10.​1007/​s00401-008-0451-6 PubMed
67.
Zurück zum Zitat Cirrito JR, Deane R, Fagan AM, Spinner ML, Parsadanian M, Finn MB, Jiang H, Prior JL, Sagare A, Bales KR, Paul SM, Zlokovic BV, Piwnica-Worms D, Holtzman DM (2005) P-glycoprotein deficiency at the blood–brain barrier increases amyloid-beta deposition in an Alzheimer disease mouse model. J Clin Invest 115:3285–3290. doi:10.1172/JCI25247 PubMed Cirrito JR, Deane R, Fagan AM, Spinner ML, Parsadanian M, Finn MB, Jiang H, Prior JL, Sagare A, Bales KR, Paul SM, Zlokovic BV, Piwnica-Worms D, Holtzman DM (2005) P-glycoprotein deficiency at the blood–brain barrier increases amyloid-beta deposition in an Alzheimer disease mouse model. J Clin Invest 115:3285–3290. doi:10.​1172/​JCI25247 PubMed
68.
Zurück zum Zitat Collingwood JF, Chong RK, Kasama T, Cervera-Gontard L, Dunin-Borkowski RE, Perry G, Posfai M, Siedlak SL, Simpson ET, Smith MA, Dobson J (2008) Three-dimensional tomographic imaging and characterization of iron compounds within Alzheimer’s plaque core material. J Alzheimers Dis 14:235–245PubMed Collingwood JF, Chong RK, Kasama T, Cervera-Gontard L, Dunin-Borkowski RE, Perry G, Posfai M, Siedlak SL, Simpson ET, Smith MA, Dobson J (2008) Three-dimensional tomographic imaging and characterization of iron compounds within Alzheimer’s plaque core material. J Alzheimers Dis 14:235–245PubMed
69.
Zurück zum Zitat Cras P, Smith MA, Richey PL, Siedlak SL, Mulvihill P, Perry G (1995) Extracellular neurofibrillary tangles reflect neuronal loss and provide further evidence of extensive protein cross-linking in Alzheimer disease. Acta Neuropathol 89:291–295. doi:10.1007/BF00309621 PubMed Cras P, Smith MA, Richey PL, Siedlak SL, Mulvihill P, Perry G (1995) Extracellular neurofibrillary tangles reflect neuronal loss and provide further evidence of extensive protein cross-linking in Alzheimer disease. Acta Neuropathol 89:291–295. doi:10.​1007/​BF00309621 PubMed
70.
Zurück zum Zitat Crook R, Verkkoniemi A, Perez-Tur J, Mehta N, Baker M, Houlden H, Farrer M, Hutton M, Lincoln S, Hardy J, Gwinn K, Somer M, Paetau A, Kalimo H, Ylikoski R, Poyhonen M, Kucera S, Haltia M (1998) A variant of Alzheimer’s disease with spastic paraparesis and unusual plaques due to deletion of exon 9 of presenilin 1. Nat Med 4:452–455. doi:10.1038/nm0498-452 PubMed Crook R, Verkkoniemi A, Perez-Tur J, Mehta N, Baker M, Houlden H, Farrer M, Hutton M, Lincoln S, Hardy J, Gwinn K, Somer M, Paetau A, Kalimo H, Ylikoski R, Poyhonen M, Kucera S, Haltia M (1998) A variant of Alzheimer’s disease with spastic paraparesis and unusual plaques due to deletion of exon 9 of presenilin 1. Nat Med 4:452–455. doi:10.​1038/​nm0498-452 PubMed
71.
Zurück zum Zitat Dal Bianco A, Bradl M, Frischer J, Kutzelnigg A, Jellinger K, Lassmann H (2008) Multiple sclerosis and Alzheimer’s disease. Ann Neurol 63:174–183. doi:10.1002/ana.21240 PubMed Dal Bianco A, Bradl M, Frischer J, Kutzelnigg A, Jellinger K, Lassmann H (2008) Multiple sclerosis and Alzheimer’s disease. Ann Neurol 63:174–183. doi:10.​1002/​ana.​21240 PubMed
72.
Zurück zum Zitat D’Andrea MR, Nagele RG, Gumula NA, Reiser PA, Polkovitch DA, Hertzog BM, Andrade-Gordon P (2002) Lipofuscin and Abeta42 exhibit distinct distribution patterns in normal and Alzheimer’s disease brains. Neurosci Lett 323:45–49. doi:10.1016/S0304-3940(01)02444-2 PubMed D’Andrea MR, Nagele RG, Gumula NA, Reiser PA, Polkovitch DA, Hertzog BM, Andrade-Gordon P (2002) Lipofuscin and Abeta42 exhibit distinct distribution patterns in normal and Alzheimer’s disease brains. Neurosci Lett 323:45–49. doi:10.​1016/​S0304-3940(01)02444-2 PubMed
73.
Zurück zum Zitat D’Andrea MR, Reiser PA, Polkovitch DA, Gumula NA, Branchide B, Hertzog BM, Schmidheiser D, Belkowski S, Gastard MC, Andrade-Gordon P (2003) The use of formic acid to embellish amyloid plaque detection in Alzheimer’s disease tissues misguides key observations. Neurosci Lett 342:114–118. doi:10.1016/S0304-3940(03)00252-0 PubMed D’Andrea MR, Reiser PA, Polkovitch DA, Gumula NA, Branchide B, Hertzog BM, Schmidheiser D, Belkowski S, Gastard MC, Andrade-Gordon P (2003) The use of formic acid to embellish amyloid plaque detection in Alzheimer’s disease tissues misguides key observations. Neurosci Lett 342:114–118. doi:10.​1016/​S0304-3940(03)00252-0 PubMed
75.
Zurück zum Zitat De Felice FG, Wu D, Lambert MP, Fernandez SJ, Velasco PT, Lacor PN, Bigio EH, Jerecic J, Acton PJ, Shughrue PJ, Chen-Dodson E, Kinney GG, Klein WL (2008) Alzheimer’s disease-type neuronal tau hyperphosphorylation induced by A beta oligomers. Neurobiol Aging 29:1334–1347. doi:10.1016/j.neurobiolaging.2007.02.029 PubMed De Felice FG, Wu D, Lambert MP, Fernandez SJ, Velasco PT, Lacor PN, Bigio EH, Jerecic J, Acton PJ, Shughrue PJ, Chen-Dodson E, Kinney GG, Klein WL (2008) Alzheimer’s disease-type neuronal tau hyperphosphorylation induced by A beta oligomers. Neurobiol Aging 29:1334–1347. doi:10.​1016/​j.​neurobiolaging.​2007.​02.​029 PubMed
76.
Zurück zum Zitat de la Monte SM, Vonsattel JP, Richardson EPJ (1988) Morphometric demonstration of atrophic changes in the cerebral cortex, white matter, and neostriatum in Huntington’s disease. J Neuropathol Exp Neurol 47:516–525. doi:10.1097/00005072-198809000-00003 PubMed de la Monte SM, Vonsattel JP, Richardson EPJ (1988) Morphometric demonstration of atrophic changes in the cerebral cortex, white matter, and neostriatum in Huntington’s disease. J Neuropathol Exp Neurol 47:516–525. doi:10.​1097/​00005072-198809000-00003 PubMed
77.
Zurück zum Zitat Deane R, Du Yan S, Submamaryan RK, LaRue B, Jovanovic S, Hogg E, Welch D, Manness L, Lin C, Yu J, Zhu H, Ghiso J, Frangione B, Stern A, Schmidt AM, Armstrong DL, Arnold B, Liliensiek B, Nawroth P, Hofman F, Kindy M, Stern D, Zlokovic B (2003) RAGE mediates amyloid-beta peptide transport across the blood–brain barrier and accumulation in brain. Nat Med 9:907–913. doi:10.1038/nm890 PubMed Deane R, Du Yan S, Submamaryan RK, LaRue B, Jovanovic S, Hogg E, Welch D, Manness L, Lin C, Yu J, Zhu H, Ghiso J, Frangione B, Stern A, Schmidt AM, Armstrong DL, Arnold B, Liliensiek B, Nawroth P, Hofman F, Kindy M, Stern D, Zlokovic B (2003) RAGE mediates amyloid-beta peptide transport across the blood–brain barrier and accumulation in brain. Nat Med 9:907–913. doi:10.​1038/​nm890 PubMed
78.
79.
Zurück zum Zitat Delacourte A (1990) General and dramatic glial reaction in Alzheimer brains. Neurology 40:33–37PubMed Delacourte A (1990) General and dramatic glial reaction in Alzheimer brains. Neurology 40:33–37PubMed
80.
Zurück zum Zitat Delacourte A, Defossez A (1986) Alzheimer’s disease: Tau proteins, the promoting factors of microtubule assembly are major components of paired helical filaments. J Neurol Sci 76:173–186. doi:10.1016/0022-510X(86)90167-X PubMed Delacourte A, Defossez A (1986) Alzheimer’s disease: Tau proteins, the promoting factors of microtubule assembly are major components of paired helical filaments. J Neurol Sci 76:173–186. doi:10.​1016/​0022-510X(86)90167-X PubMed
81.
Zurück zum Zitat Delaère P, Duyckaerts C, He Y, Piette F, Hauw J-J (1991) Subtypes and differential laminar distributions of βA4 deposits in Alzheimer’s disease: relationship with the intellectual status of 26 cases. Acta Neuropathol 81:328–335. doi:10.1007/BF00305876 PubMed Delaère P, Duyckaerts C, He Y, Piette F, Hauw J-J (1991) Subtypes and differential laminar distributions of βA4 deposits in Alzheimer’s disease: relationship with the intellectual status of 26 cases. Acta Neuropathol 81:328–335. doi:10.​1007/​BF00305876 PubMed
82.
Zurück zum Zitat Delaère P, Duyckaerts C, Masters C, Piette F, Hauw J-J (1990) Large amounts of neocortical βA4 deposits without Alzheimer changes in a nondemented case. Neurosci Lett 116:87–93. doi:10.1016/0304-3940(90)90391-L PubMed Delaère P, Duyckaerts C, Masters C, Piette F, Hauw J-J (1990) Large amounts of neocortical βA4 deposits without Alzheimer changes in a nondemented case. Neurosci Lett 116:87–93. doi:10.​1016/​0304-3940(90)90391-L PubMed
83.
84.
Zurück zum Zitat Delatour B, Mercken L, El Hachimi KH, Colle MA, Pradier L, Duyckaerts C (2001) FE65 in Alzheimer’s disease: neuronal distribution and association with neurofibrillary tangles. Am J Pathol 158:1585–1591PubMed Delatour B, Mercken L, El Hachimi KH, Colle MA, Pradier L, Duyckaerts C (2001) FE65 in Alzheimer’s disease: neuronal distribution and association with neurofibrillary tangles. Am J Pathol 158:1585–1591PubMed
85.
Zurück zum Zitat Delobel P, Flament S, Hamdane M, Mailliot C, Sambo AV, Begard S, Sergeant N, Delacourte A, Vilain JP, Buee L (2002) Abnormal Tau phosphorylation of the Alzheimer-type also occurs during mitosis. J Neurochem 83:412–420. doi:10.1046/j.1471-4159.2002.01143.x PubMed Delobel P, Flament S, Hamdane M, Mailliot C, Sambo AV, Begard S, Sergeant N, Delacourte A, Vilain JP, Buee L (2002) Abnormal Tau phosphorylation of the Alzheimer-type also occurs during mitosis. J Neurochem 83:412–420. doi:10.​1046/​j.​1471-4159.​2002.​01143.​x PubMed
87.
Zurück zum Zitat Dickson DW, Crystal HA, Bevona C, Honer W, Vincent I, Davies P (1995) Correlations of synaptic and pathological markers with cognition of the elderly. Neurobiol Aging 16:285–304. doi:10.1016/0197-4580(95)00013-5 PubMed Dickson DW, Crystal HA, Bevona C, Honer W, Vincent I, Davies P (1995) Correlations of synaptic and pathological markers with cognition of the elderly. Neurobiol Aging 16:285–304. doi:10.​1016/​0197-4580(95)00013-5 PubMed
88.
Zurück zum Zitat Dickson DW, Crystal HA, Mattiace LA, Masur DM, Blau AD, Davies P, Yen SH, Aronson MK (1992) Identification of normal and pathological aging in prospectively studied nondemented elderly humans. Neurobiol Aging 13:179–189. doi:10.1016/0197-4580(92)90027-U PubMed Dickson DW, Crystal HA, Mattiace LA, Masur DM, Blau AD, Davies P, Yen SH, Aronson MK (1992) Identification of normal and pathological aging in prospectively studied nondemented elderly humans. Neurobiol Aging 13:179–189. doi:10.​1016/​0197-4580(92)90027-U PubMed
89.
Zurück zum Zitat Dickson DW, Ksiezak-Reding H, Davies P, Yen SH (1987) A monoclonal antibody that recognizes a phosphorylated epitope in Alzheimer’s neurofibrillary tangles, neurofilaments and tau proteins immunostains granulo-vacuolar degeneration. Acta Neuropathol 73:254–258. doi:10.1007/BF00686619 PubMed Dickson DW, Ksiezak-Reding H, Davies P, Yen SH (1987) A monoclonal antibody that recognizes a phosphorylated epitope in Alzheimer’s neurofibrillary tangles, neurofilaments and tau proteins immunostains granulo-vacuolar degeneration. Acta Neuropathol 73:254–258. doi:10.​1007/​BF00686619 PubMed
90.
Zurück zum Zitat Dickson DW, Lee SC, Mattiace LA, Yen SC, Brosnan C (1993) Microglia and cytokines in neurological disease, with special reference to AIDS and Alzheimer’s disease. Glia 7:75–83. doi:10.1002/glia.440070113 PubMed Dickson DW, Lee SC, Mattiace LA, Yen SC, Brosnan C (1993) Microglia and cytokines in neurological disease, with special reference to AIDS and Alzheimer’s disease. Glia 7:75–83. doi:10.​1002/​glia.​440070113 PubMed
91.
Zurück zum Zitat Dickson DW, Liu WK, Kress Y, Ku J, DeJesus O, Yen SHC (1993) Phosphorylated tau immunoreactivity of granulovacuolar bodies (GVB) of Alzheimer’s disease: localization of two amino terminal tau epitopes in GVB. Acta Neuropathol 85:463–470. doi:10.1007/BF00230483 PubMed Dickson DW, Liu WK, Kress Y, Ku J, DeJesus O, Yen SHC (1993) Phosphorylated tau immunoreactivity of granulovacuolar bodies (GVB) of Alzheimer’s disease: localization of two amino terminal tau epitopes in GVB. Acta Neuropathol 85:463–470. doi:10.​1007/​BF00230483 PubMed
92.
Zurück zum Zitat Dickson TC, King CE, McCormack GH, Vickers JC (1999) Neurochemical diversity of dystrophic neurites in the early and late stages of Alzheimer’s disease. Exp Neurol 156:100–110. doi:10.1006/exnr.1998.7010 PubMed Dickson TC, King CE, McCormack GH, Vickers JC (1999) Neurochemical diversity of dystrophic neurites in the early and late stages of Alzheimer’s disease. Exp Neurol 156:100–110. doi:10.​1006/​exnr.​1998.​7010 PubMed
93.
Zurück zum Zitat Dong J, Atwood CS, Anderson VE, Siedlak SL, Smith MA, Perry G, Carey PR (2003) Metal binding and oxidation of amyloid-beta within isolated senile plaque cores: Raman microscopic evidence. Biochemistry 42:2768–2773. doi:10.1021/bi0272151 PubMed Dong J, Atwood CS, Anderson VE, Siedlak SL, Smith MA, Perry G, Carey PR (2003) Metal binding and oxidation of amyloid-beta within isolated senile plaque cores: Raman microscopic evidence. Biochemistry 42:2768–2773. doi:10.​1021/​bi0272151 PubMed
94.
Zurück zum Zitat Double KL, Halliday GM, Kril JJ, Harasty JA, Cullen K, Brooks WS, Creasey H, Broe GA (1996) Topography of brain atrophy during normal aging and Alzheimer’s disease. Neurobiol Aging 17:513–521. doi:10.1016/0197-4580(96)00005-X PubMed Double KL, Halliday GM, Kril JJ, Harasty JA, Cullen K, Brooks WS, Creasey H, Broe GA (1996) Topography of brain atrophy during normal aging and Alzheimer’s disease. Neurobiol Aging 17:513–521. doi:10.​1016/​0197-4580(96)00005-X PubMed
95.
Zurück zum Zitat Dragunow M, Faull RL, Lawlor P, Beilharz EJ, Singleton K, Walker EB, Mee E (1995) In situ evidence for DNA fragmentation in Huntington’s disease striatum and Alzheimer’s disease temporal lobes. Neuroreport 6:1053–1057. doi:10.1097/00001756-199505090-00026 PubMed Dragunow M, Faull RL, Lawlor P, Beilharz EJ, Singleton K, Walker EB, Mee E (1995) In situ evidence for DNA fragmentation in Huntington’s disease striatum and Alzheimer’s disease temporal lobes. Neuroreport 6:1053–1057. doi:10.​1097/​00001756-199505090-00026 PubMed
96.
Zurück zum Zitat Dumanchin C, Tournier I, Martin C, Didic M, Belliard S, Carlander B, Rouhart F, Duyckaerts C, Pellissier JF, Latouche JB, Hannequin D, Frebourg T, Tosi M, Campion D (2006) Biological effects of four PSEN1 gene mutations causing Alzheimer disease with spastic paraparesis and cotton wool plaques. Hum Mutat 27:1063. doi:10.1002/humu.9458 PubMed Dumanchin C, Tournier I, Martin C, Didic M, Belliard S, Carlander B, Rouhart F, Duyckaerts C, Pellissier JF, Latouche JB, Hannequin D, Frebourg T, Tosi M, Campion D (2006) Biological effects of four PSEN1 gene mutations causing Alzheimer disease with spastic paraparesis and cotton wool plaques. Hum Mutat 27:1063. doi:10.​1002/​humu.​9458 PubMed
97.
Zurück zum Zitat Duyckaerts C, Bennecib M, Grignon Y, Uchihara T, He Y, Piette F, Hauw JJ (1997) Modeling the relation between neurofibrillary tangles and intellectual status. Neurobiol Aging 18:267–273. doi:10.1016/S0197-4580(97)80306-5 PubMed Duyckaerts C, Bennecib M, Grignon Y, Uchihara T, He Y, Piette F, Hauw JJ (1997) Modeling the relation between neurofibrillary tangles and intellectual status. Neurobiol Aging 18:267–273. doi:10.​1016/​S0197-4580(97)80306-5 PubMed
98.
Zurück zum Zitat Duyckaerts C, Colle MA, Dessi F, Grignon Y, Piette F, Hauw JJ (1998) The progression of the lesions in Alzheimer disease: insights from a prospective clinicopathological study. J Neural Trans 53:S119–S126 Duyckaerts C, Colle MA, Dessi F, Grignon Y, Piette F, Hauw JJ (1998) The progression of the lesions in Alzheimer disease: insights from a prospective clinicopathological study. J Neural Trans 53:S119–S126
99.
Zurück zum Zitat Duyckaerts C, Colle MA, Seilhean D, Hauw J-J (1998) Laminar spongiosis of the dentate gyrus: a sign of disconnection, present in cases of Alzheimer disease. Acta Neuropathol 95:413–420. doi:10.1007/s004010050818 PubMed Duyckaerts C, Colle MA, Seilhean D, Hauw J-J (1998) Laminar spongiosis of the dentate gyrus: a sign of disconnection, present in cases of Alzheimer disease. Acta Neuropathol 95:413–420. doi:10.​1007/​s004010050818 PubMed
100.
Zurück zum Zitat Duyckaerts C, Delaère P, Hauw J-J, Abbamondi-Pinto AL, Sorbi S, Allen I, Brion J-P, Flament-Durand J, Duchen L, Kauss J, Sclote W, Lowe J, Probst A, Ravid R, Swaab DF, Renkawek K, Tomlinson B (1990) Rating of the lesions in senile dementia of the Alzheimer type: concordance between laboratories. A European multicenter study under the auspices of Eurage. J Neurol Sci 97:295–323. doi:10.1016/0022-510X(90)90226-D PubMed Duyckaerts C, Delaère P, Hauw J-J, Abbamondi-Pinto AL, Sorbi S, Allen I, Brion J-P, Flament-Durand J, Duchen L, Kauss J, Sclote W, Lowe J, Probst A, Ravid R, Swaab DF, Renkawek K, Tomlinson B (1990) Rating of the lesions in senile dementia of the Alzheimer type: concordance between laboratories. A European multicenter study under the auspices of Eurage. J Neurol Sci 97:295–323. doi:10.​1016/​0022-510X(90)90226-D PubMed
102.
103.
Zurück zum Zitat Duyckaerts C, Hauw J-J, Bastenaire F, Piette F, Poulain C, Rainsard V, Javoy-Agid F, Berthaux P (1986) Laminar distribution of neocortical plaques in senile dementia of the Alzheimer type. Acta Neuropathol 70:249–256. doi:10.1007/BF00686079 PubMed Duyckaerts C, Hauw J-J, Bastenaire F, Piette F, Poulain C, Rainsard V, Javoy-Agid F, Berthaux P (1986) Laminar distribution of neocortical plaques in senile dementia of the Alzheimer type. Acta Neuropathol 70:249–256. doi:10.​1007/​BF00686079 PubMed
104.
Zurück zum Zitat Duyckaerts C, Hauw J-J, Piette F, Rainsard C, Poulain V, Berthaux P, Escourolle R (1985) Cortical atrophy in senile dementia of the Alzheimer type is mainly due to a decrease in cortical length. Acta Neuropathol 66:72–74. doi:10.1007/BF00698298 PubMed Duyckaerts C, Hauw J-J, Piette F, Rainsard C, Poulain V, Berthaux P, Escourolle R (1985) Cortical atrophy in senile dementia of the Alzheimer type is mainly due to a decrease in cortical length. Acta Neuropathol 66:72–74. doi:10.​1007/​BF00698298 PubMed
106.
Zurück zum Zitat Duyckaerts C, Llamas E, Delaère P, Miele P, Hauw J-J (1989) Neuronal loss and neuronal atrophy. Computer simulation in connection with Alzheimer’s disease. Brain Res 504:94–100. doi:10.1016/0006-8993(89)91602-8 PubMed Duyckaerts C, Llamas E, Delaère P, Miele P, Hauw J-J (1989) Neuronal loss and neuronal atrophy. Computer simulation in connection with Alzheimer’s disease. Brain Res 504:94–100. doi:10.​1016/​0006-8993(89)91602-8 PubMed
107.
108.
Zurück zum Zitat Duyckaerts C, Uchihara T, Seilhean D, He Y, Hauw JJ (1997) Dissociation of Alzheimer type pathology in a disconnected piece of cortex. Acta Neuropathol 93:501–507. doi:10.1007/s004010050645 PubMed Duyckaerts C, Uchihara T, Seilhean D, He Y, Hauw JJ (1997) Dissociation of Alzheimer type pathology in a disconnected piece of cortex. Acta Neuropathol 93:501–507. doi:10.​1007/​s004010050645 PubMed
109.
Zurück zum Zitat Eikelenboom P, Veerhuis R, Familian A, Hoozemans JJ, van Gool WA, Rozemuller AJ (2008) Neuroinflammation in plaque and vascular beta-amyloid disorders: clinical and therapeutic implications. Neurodegener Dis 5:190–193. doi:10.1159/000113699 PubMed Eikelenboom P, Veerhuis R, Familian A, Hoozemans JJ, van Gool WA, Rozemuller AJ (2008) Neuroinflammation in plaque and vascular beta-amyloid disorders: clinical and therapeutic implications. Neurodegener Dis 5:190–193. doi:10.​1159/​000113699 PubMed
110.
111.
Zurück zum Zitat Falke E, Nissanov J, Mitchell TW, Bennett DA, Trojanowski JQ, Arnold SE (2003) Subicular dendritic arborization in Alzheimer’s disease correlates with neurofibrillary tangle density. Am J Pathol 163:1615–1621PubMed Falke E, Nissanov J, Mitchell TW, Bennett DA, Trojanowski JQ, Arnold SE (2003) Subicular dendritic arborization in Alzheimer’s disease correlates with neurofibrillary tangle density. Am J Pathol 163:1615–1621PubMed
112.
Zurück zum Zitat Fein JA, Sokolow S, Miller CA, Vinters HV, Yang F, Cole GM, Gylys KH (2008) Co-localization of amyloid beta and tau pathology in Alzheimer’s disease synaptosomes. Am J Pathol 172:1683–1692. doi:10.2353/ajpath.2008.070829 PubMed Fein JA, Sokolow S, Miller CA, Vinters HV, Yang F, Cole GM, Gylys KH (2008) Co-localization of amyloid beta and tau pathology in Alzheimer’s disease synaptosomes. Am J Pathol 172:1683–1692. doi:10.​2353/​ajpath.​2008.​070829 PubMed
113.
Zurück zum Zitat Fisher O (1907) Miliare Nekrosen mit drusigen Wucherungen der Neurofibrillen, eine regelmässige Veranderung der Hirnrind bei seniler Demenz. Monatsschr Psychiatr Neurol 22:361–372 Fisher O (1907) Miliare Nekrosen mit drusigen Wucherungen der Neurofibrillen, eine regelmässige Veranderung der Hirnrind bei seniler Demenz. Monatsschr Psychiatr Neurol 22:361–372
116.
Zurück zum Zitat Fujino Y, Wang DS, Thomas N, Espinoza M, Davies P, Dickson DW (2005) Increased frequency of argyrophilic grain disease in Alzheimer disease with 4R tau-specific immunohistochemistry. J Neuropathol Exp Neurol 64:209–214PubMed Fujino Y, Wang DS, Thomas N, Espinoza M, Davies P, Dickson DW (2005) Increased frequency of argyrophilic grain disease in Alzheimer disease with 4R tau-specific immunohistochemistry. J Neuropathol Exp Neurol 64:209–214PubMed
117.
Zurück zum Zitat Garcia-Sierra F, Mondragon-Rodriguez S, Basurto-Islas G (2008) Truncation of tau protein and its pathological significance in Alzheimer’s disease. J Alzheimers Dis 14:401–409PubMed Garcia-Sierra F, Mondragon-Rodriguez S, Basurto-Islas G (2008) Truncation of tau protein and its pathological significance in Alzheimer’s disease. J Alzheimers Dis 14:401–409PubMed
118.
Zurück zum Zitat German DC, Manaye KF, White CL 3rd, Woodward DJ, McIntire DD, Smith WK, Kalaria RN, Mann DM (1992) Disease-specific patterns of locus coeruleus cell loss. Ann Neurol 32:667–676. doi:10.1002/ana.410320510 PubMed German DC, Manaye KF, White CL 3rd, Woodward DJ, McIntire DD, Smith WK, Kalaria RN, Mann DM (1992) Disease-specific patterns of locus coeruleus cell loss. Ann Neurol 32:667–676. doi:10.​1002/​ana.​410320510 PubMed
119.
Zurück zum Zitat Gertz HJ, Xuereb J, Huppert F, Brayne C, McGee MA, Paykel E, Harrington C, Mukaetova-Ladinska E, Arendt T, Wischik CM (1998) Examination of the validity of the hierarchical model of neuropathological staging in normal aging and Alzheimer’s disease. Acta Neuropathol 95:154–158. doi:10.1007/s004010050780 PubMed Gertz HJ, Xuereb J, Huppert F, Brayne C, McGee MA, Paykel E, Harrington C, Mukaetova-Ladinska E, Arendt T, Wischik CM (1998) Examination of the validity of the hierarchical model of neuropathological staging in normal aging and Alzheimer’s disease. Acta Neuropathol 95:154–158. doi:10.​1007/​s004010050780 PubMed
120.
Zurück zum Zitat Gertz HJ, Xuereb JH, Huppert FA, Brayne C, Kruger H, McGee MA, Paykel ES, Harrington CR, Mukaetova-Ladinska EB, O’Connor DW, Wischik CM (1996) The relationship between clinical dementia and neuropathological staging (Braak) in a very elderly community sample. Eur Arch Psychiatry Clin Neurosci 246:132–136. doi:10.1007/BF02189114 PubMed Gertz HJ, Xuereb JH, Huppert FA, Brayne C, Kruger H, McGee MA, Paykel ES, Harrington CR, Mukaetova-Ladinska EB, O’Connor DW, Wischik CM (1996) The relationship between clinical dementia and neuropathological staging (Braak) in a very elderly community sample. Eur Arch Psychiatry Clin Neurosci 246:132–136. doi:10.​1007/​BF02189114 PubMed
121.
122.
Zurück zum Zitat Giannakopoulos P, Herrmann FR, Bussiere T, Bouras C, Kovari E, Perl DP, Morrison JH, Gold G, Hof PR (2003) Tangle and neuron numbers, but not amyloid load, predict cognitive status in Alzheimer’s disease. Neurology 60:1495–1500PubMed Giannakopoulos P, Herrmann FR, Bussiere T, Bouras C, Kovari E, Perl DP, Morrison JH, Gold G, Hof PR (2003) Tangle and neuron numbers, but not amyloid load, predict cognitive status in Alzheimer’s disease. Neurology 60:1495–1500PubMed
123.
Zurück zum Zitat Giannakopoulos P, von Gunten A, Kovari E, Gold G, Herrmann FR, Hof PR, Bouras C (2007) Stereological analysis of neuropil threads in the hippocampal formation: relationships with Alzheimer’s disease neuronal pathology and cognition. Neuropathol Appl Neurobiol 33:334–343. doi:10.1111/j.1365-2990.2007.00827.x PubMed Giannakopoulos P, von Gunten A, Kovari E, Gold G, Herrmann FR, Hof PR, Bouras C (2007) Stereological analysis of neuropil threads in the hippocampal formation: relationships with Alzheimer’s disease neuronal pathology and cognition. Neuropathol Appl Neurobiol 33:334–343. doi:10.​1111/​j.​1365-2990.​2007.​00827.​x PubMed
125.
Zurück zum Zitat Girardot N, Allinquant B, Langui D, El Hachimi KH, Dubois B, Hauw J-J, Duyckaerts C (2003) Accumulation of flotillin-1 in tangle-bearing neurones of Alzheimer’s disease. J Neuropathol Appl Neurobiol 29:451–461. doi:10.1046/j.1365-2990.2003.00479.x Girardot N, Allinquant B, Langui D, El Hachimi KH, Dubois B, Hauw J-J, Duyckaerts C (2003) Accumulation of flotillin-1 in tangle-bearing neurones of Alzheimer’s disease. J Neuropathol Appl Neurobiol 29:451–461. doi:10.​1046/​j.​1365-2990.​2003.​00479.​x
126.
Zurück zum Zitat Gold G, Bouras C, Kovari E, Canuto A, Glaria BG, Malky A, Hof PR, Michel JP, Giannakopoulos P (2000) Clinical validity of Braak neuropathological staging in the oldest-old. Acta Neuropathol 99:579–582. doi:10.1007/s004010051163 Discussion 583–574PubMed Gold G, Bouras C, Kovari E, Canuto A, Glaria BG, Malky A, Hof PR, Michel JP, Giannakopoulos P (2000) Clinical validity of Braak neuropathological staging in the oldest-old. Acta Neuropathol 99:579–582. doi:10.​1007/​s004010051163 Discussion 583–574PubMed
127.
Zurück zum Zitat Gold G, Giannakopoulos P, Herrmann FR, Bouras C, Kovari E (2007) Identification of Alzheimer and vascular lesion thresholds for mixed dementia. Brain 130:2830–2836. doi:10.1093/brain/awm228 PubMed Gold G, Giannakopoulos P, Herrmann FR, Bouras C, Kovari E (2007) Identification of Alzheimer and vascular lesion thresholds for mixed dementia. Brain 130:2830–2836. doi:10.​1093/​brain/​awm228 PubMed
128.
Zurück zum Zitat Gold G, Kovari E, Corte G, Herrmann FR, Canuto A, Bussiere T, Hof PR, Bouras C, Giannakopoulos P (2001) Clinical validity of A beta-protein deposition staging in brain aging and Alzheimer disease. J Neuropathol Exp Neurol 60:946–952PubMed Gold G, Kovari E, Corte G, Herrmann FR, Canuto A, Bussiere T, Hof PR, Bouras C, Giannakopoulos P (2001) Clinical validity of A beta-protein deposition staging in brain aging and Alzheimer disease. J Neuropathol Exp Neurol 60:946–952PubMed
129.
Zurück zum Zitat Gomez-Isla T, Hollister R, West H, Mui S, Growdon JH, Petersen RC, Parisi JE, Hyman BT (1997) Neuronal loss correlates with but exceeds neurofibrillary tangles in Alzheimer’s disease. Ann Neurol 41:17–24. doi:10.1002/ana.410410106 PubMed Gomez-Isla T, Hollister R, West H, Mui S, Growdon JH, Petersen RC, Parisi JE, Hyman BT (1997) Neuronal loss correlates with but exceeds neurofibrillary tangles in Alzheimer’s disease. Ann Neurol 41:17–24. doi:10.​1002/​ana.​410410106 PubMed
130.
Zurück zum Zitat Gomez-Isla T, Price JL, McKeel DW, Morris JC, Growdon JH, Hyman BT (1996) Profound loss of layer II entorhinal cortex neurons occurs in very mild Alzheimer’s disease. J Neurosci 16:4491–4500PubMed Gomez-Isla T, Price JL, McKeel DW, Morris JC, Growdon JH, Hyman BT (1996) Profound loss of layer II entorhinal cortex neurons occurs in very mild Alzheimer’s disease. J Neurosci 16:4491–4500PubMed
131.
Zurück zum Zitat Gonatas NK, Anderson W, Evangelista I (1967) The contribution of altered synapses in the senile plaque: an electron microscopic study in Alzheimer’s dementia. J Neuropathol Exp Neurol 26:25–39. doi:10.1097/00005072-196701000-00003 PubMed Gonatas NK, Anderson W, Evangelista I (1967) The contribution of altered synapses in the senile plaque: an electron microscopic study in Alzheimer’s dementia. J Neuropathol Exp Neurol 26:25–39. doi:10.​1097/​00005072-196701000-00003 PubMed
132.
Zurück zum Zitat Goudsmit E, Hofman MA, Fliers E, Swaab DF (1990) The supraoptic and paraventricular nuclei of the human hypothalamus in relation to sex, age and Alzheimer’s disease. Neurobiol Aging 11:529–536. doi:10.1016/0197-4580(90)90114-F PubMed Goudsmit E, Hofman MA, Fliers E, Swaab DF (1990) The supraoptic and paraventricular nuclei of the human hypothalamus in relation to sex, age and Alzheimer’s disease. Neurobiol Aging 11:529–536. doi:10.​1016/​0197-4580(90)90114-F PubMed
133.
Zurück zum Zitat Gouras GK, Tsai J, Naslund J, Vincent B, Edgar M, Checler F, Greenfield JP, Haroutunian V, Buxbaum JD, Xu H, Greengard P, Relkin NR (2000) Intraneuronal Abeta42 accumulation in human brain. Am J Pathol 156:15–20PubMed Gouras GK, Tsai J, Naslund J, Vincent B, Edgar M, Checler F, Greenfield JP, Haroutunian V, Buxbaum JD, Xu H, Greengard P, Relkin NR (2000) Intraneuronal Abeta42 accumulation in human brain. Am J Pathol 156:15–20PubMed
134.
Zurück zum Zitat Grabowski TJ, Cho HS, Vonsattel JP, Rebeck GW, Greenberg SM (2001) Novel amyloid precursor protein mutation in an Iowa family with dementia and severe cerebral amyloid angiopathy. Ann Neurol 49:697–705. doi:10.1002/ana.1009 PubMed Grabowski TJ, Cho HS, Vonsattel JP, Rebeck GW, Greenberg SM (2001) Novel amyloid precursor protein mutation in an Iowa family with dementia and severe cerebral amyloid angiopathy. Ann Neurol 49:697–705. doi:10.​1002/​ana.​1009 PubMed
136.
137.
Zurück zum Zitat Greffard S, Verny M, Bonnet AM, Seilhean D, Hauw JJ, Duyckaerts C (2008) A stable proportion of Lewy body bearing neurons in the substantia nigra suggests a model in which the Lewy body causes neuronal death. Neurobiol Aging. doi:10.1016/j.neurobiolaging.2008.03.015 Greffard S, Verny M, Bonnet AM, Seilhean D, Hauw JJ, Duyckaerts C (2008) A stable proportion of Lewy body bearing neurons in the substantia nigra suggests a model in which the Lewy body causes neuronal death. Neurobiol Aging. doi:10.​1016/​j.​neurobiolaging.​2008.​03.​015
139.
Zurück zum Zitat Grignon Y, Duyckaerts C, Bennecib M, Hauw JJ (1998) Cytoarchitectonic alterations in the supramarginal gyrus of late onset Alzheimer’s disease. Acta Neuropathol 95:395–406. doi:10.1007/s004010050816 PubMed Grignon Y, Duyckaerts C, Bennecib M, Hauw JJ (1998) Cytoarchitectonic alterations in the supramarginal gyrus of late onset Alzheimer’s disease. Acta Neuropathol 95:395–406. doi:10.​1007/​s004010050816 PubMed
141.
Zurück zum Zitat Grundke-Iqbal I, Iqbal K, George L, Tung YC, Kim KS, Wisniewski HM (1989) Amyloid protein and neurofibrillary tangles coexist in the same neuron in Alzheimer disease. Proc Natl Acad Sci USA 86:2853–2857. doi:10.1073/pnas.86.8.2853 PubMed Grundke-Iqbal I, Iqbal K, George L, Tung YC, Kim KS, Wisniewski HM (1989) Amyloid protein and neurofibrillary tangles coexist in the same neuron in Alzheimer disease. Proc Natl Acad Sci USA 86:2853–2857. doi:10.​1073/​pnas.​86.​8.​2853 PubMed
142.
Zurück zum Zitat Grundke-Iqbal I, Iqbal K, Quinlan M, Tung YC, Zaidi MS, Wisniewski HM (1986) Microtubule-associated protein tau. A component of Alzheimer paired helical filaments. J Biol Chem 261:6084–6089PubMed Grundke-Iqbal I, Iqbal K, Quinlan M, Tung YC, Zaidi MS, Wisniewski HM (1986) Microtubule-associated protein tau. A component of Alzheimer paired helical filaments. J Biol Chem 261:6084–6089PubMed
143.
Zurück zum Zitat Grundke-Iqbal I, Iqbal K, Tung YC, Quinlan M, Wisniewski HM, Binder LI (1986) Abnormal phosphorylation of the microtubule-associated protein tau (tau) in Alzheimer cytoskeletal pathology. Proc Natl Acad Sci USA 83:4913–4917. doi:10.1073/pnas.83.13.4913 PubMed Grundke-Iqbal I, Iqbal K, Tung YC, Quinlan M, Wisniewski HM, Binder LI (1986) Abnormal phosphorylation of the microtubule-associated protein tau (tau) in Alzheimer cytoskeletal pathology. Proc Natl Acad Sci USA 83:4913–4917. doi:10.​1073/​pnas.​83.​13.​4913 PubMed
144.
Zurück zum Zitat Grundke-Iqbal I, Iqbal K, Tung YC, Wang GP, Wisniewski HM (1985) Alzheimer paired helical filaments: cross-reacting polypeptide/s normally present in brain. Acta Neuropathol 66:52–61. doi:10.1007/BF00698295 PubMed Grundke-Iqbal I, Iqbal K, Tung YC, Wang GP, Wisniewski HM (1985) Alzheimer paired helical filaments: cross-reacting polypeptide/s normally present in brain. Acta Neuropathol 66:52–61. doi:10.​1007/​BF00698295 PubMed
145.
Zurück zum Zitat Grutzendler J, Helmin K, Tsai J, Gan WB (2007) Various dendritic abnormalities are associated with fibrillar amyloid deposits in Alzheimer’s disease. Ann N Y Acad Sci 1097:30–39. doi:10.1196/annals.1379.003 PubMed Grutzendler J, Helmin K, Tsai J, Gan WB (2007) Various dendritic abnormalities are associated with fibrillar amyloid deposits in Alzheimer’s disease. Ann N Y Acad Sci 1097:30–39. doi:10.​1196/​annals.​1379.​003 PubMed
147.
Zurück zum Zitat Guo JP, Arai T, Miklossy J, McGeer PL (2006) Abeta and tau form soluble complexes that may promote self aggregation of both into the insoluble forms observed in Alzheimer’s disease. Proc Natl Acad Sci USA 103:1953–1958. doi:10.1073/pnas.0509386103 PubMed Guo JP, Arai T, Miklossy J, McGeer PL (2006) Abeta and tau form soluble complexes that may promote self aggregation of both into the insoluble forms observed in Alzheimer’s disease. Proc Natl Acad Sci USA 103:1953–1958. doi:10.​1073/​pnas.​0509386103 PubMed
148.
Zurück zum Zitat Gylys KH, Fein JA, Yang F, Wiley DJ, Miller CA, Cole GM (2004) Synaptic changes in Alzheimer’s disease: increased amyloid-beta and gliosis in surviving terminals is accompanied by decreased PSD-95 fluorescence. Am J Pathol 165:1809–1817PubMed Gylys KH, Fein JA, Yang F, Wiley DJ, Miller CA, Cole GM (2004) Synaptic changes in Alzheimer’s disease: increased amyloid-beta and gliosis in surviving terminals is accompanied by decreased PSD-95 fluorescence. Am J Pathol 165:1809–1817PubMed
149.
Zurück zum Zitat Gyure KA, Durham R, Stewart WF, Smialek JE, Troncoso JC (2001) Intraneuronal abeta-amyloid precedes development of amyloid plaques in Down syndrome. Arch Pathol Lab Med 125:489–492PubMed Gyure KA, Durham R, Stewart WF, Smialek JE, Troncoso JC (2001) Intraneuronal abeta-amyloid precedes development of amyloid plaques in Down syndrome. Arch Pathol Lab Med 125:489–492PubMed
152.
Zurück zum Zitat Hansen LA, Masliah E, Terry RD, Mirra SS (1989) A neuropathological subset of Alzheimer’s disease with concomitant Lewy body disease and spongiform change. Acta Neuropathol 78(2):194–201PubMed Hansen LA, Masliah E, Terry RD, Mirra SS (1989) A neuropathological subset of Alzheimer’s disease with concomitant Lewy body disease and spongiform change. Acta Neuropathol 78(2):194–201PubMed
153.
Zurück zum Zitat Harigaya Y, Saido TC, Eckman CB, Prada CM, Shoji M, Younkin SG (2000) Amyloid beta protein starting pyroglutamate at position 3 is a major component of the amyloid deposits in the Alzheimer’s disease brain. Biochem Biophys Res Commun 276:422–427. doi:10.1006/bbrc.2000.3490 PubMed Harigaya Y, Saido TC, Eckman CB, Prada CM, Shoji M, Younkin SG (2000) Amyloid beta protein starting pyroglutamate at position 3 is a major component of the amyloid deposits in the Alzheimer’s disease brain. Biochem Biophys Res Commun 276:422–427. doi:10.​1006/​bbrc.​2000.​3490 PubMed
154.
Zurück zum Zitat Haroutunian V, Schnaider-Beeri M, Schmeidler J, Wysocki M, Purohit DP, Perl DP, Libow LS, Lesser GT, Maroukian M, Grossman HT (2008) Role of the neuropathology of Alzheimer disease in dementia in the oldest-old. Arch Neurol 65:1211–1217. doi:10.1001/archneur.65.9.1211 PubMed Haroutunian V, Schnaider-Beeri M, Schmeidler J, Wysocki M, Purohit DP, Perl DP, Libow LS, Lesser GT, Maroukian M, Grossman HT (2008) Role of the neuropathology of Alzheimer disease in dementia in the oldest-old. Arch Neurol 65:1211–1217. doi:10.​1001/​archneur.​65.​9.​1211 PubMed
155.
Zurück zum Zitat Hayes GM, Howlett DR, Griffin GE (2002) Production of beta-amyloid by primary human foetal mixed brain cell cultures and its modulation by exogenous soluble beta-amyloid. Neuroscience 113:641–646. doi:10.1016/S0306-4522(02)00191-4 PubMed Hayes GM, Howlett DR, Griffin GE (2002) Production of beta-amyloid by primary human foetal mixed brain cell cultures and its modulation by exogenous soluble beta-amyloid. Neuroscience 113:641–646. doi:10.​1016/​S0306-4522(02)00191-4 PubMed
156.
Zurück zum Zitat He Y, Delaere P, Duyckaerts C, Wasowicz M, Piette F, Hauw JJ (1993) Two distinct ubiquitin immunoreactive senile plaques in Alzheimer’s disease: relationship with the intellectual status in 29 cases. Acta Neuropathol 86:109–116. doi:10.1007/BF00454909 PubMed He Y, Delaere P, Duyckaerts C, Wasowicz M, Piette F, Hauw JJ (1993) Two distinct ubiquitin immunoreactive senile plaques in Alzheimer’s disease: relationship with the intellectual status in 29 cases. Acta Neuropathol 86:109–116. doi:10.​1007/​BF00454909 PubMed
158.
Zurück zum Zitat Heinonen O, Soininen H, Syrjanen S, Neittaanmaki H, Paljarvi L, Kosunen O, Syrjanen K, Riekkinen P Sr (1994) beta-Amyloid protein immunoreactivity in skin is not a reliable marker of Alzheimer’s disease. An autopsy-controlled study. Arch Neurol 51:799–804PubMed Heinonen O, Soininen H, Syrjanen S, Neittaanmaki H, Paljarvi L, Kosunen O, Syrjanen K, Riekkinen P Sr (1994) beta-Amyloid protein immunoreactivity in skin is not a reliable marker of Alzheimer’s disease. An autopsy-controlled study. Arch Neurol 51:799–804PubMed
159.
160.
Zurück zum Zitat Herzog AG, Kemper TL (1980) Amygdaloid changes in aging and dementia. Arch Neurol 37:625–629PubMed Herzog AG, Kemper TL (1980) Amygdaloid changes in aging and dementia. Arch Neurol 37:625–629PubMed
161.
Zurück zum Zitat Higashi S, Iseki E, Yamamoto R, Minegishi M, Hino H, Fujisawa K, Togo T, Katsuse O, Uchikado H, Furukawa Y, Kosaka K, Arai H (2007) Concurrence of TDP-43, tau and alpha-synuclein pathology in brains of Alzheimer’s disease and dementia with Lewy bodies. Brain Res 1184:284–294. doi:10.1016/j.brainres.2007.09.048 PubMed Higashi S, Iseki E, Yamamoto R, Minegishi M, Hino H, Fujisawa K, Togo T, Katsuse O, Uchikado H, Furukawa Y, Kosaka K, Arai H (2007) Concurrence of TDP-43, tau and alpha-synuclein pathology in brains of Alzheimer’s disease and dementia with Lewy bodies. Brain Res 1184:284–294. doi:10.​1016/​j.​brainres.​2007.​09.​048 PubMed
163.
Zurück zum Zitat Hock C, Golombowski S, Muller-Spahn F, Peschel O, Riederer A, Probst A, Mandelkow E, Unger J (1998) Histological markers in nasal mucosa of patients with Alzheimer’s disease. Eur Neurol 40:31–36. doi:10.1159/000007953 PubMed Hock C, Golombowski S, Muller-Spahn F, Peschel O, Riederer A, Probst A, Mandelkow E, Unger J (1998) Histological markers in nasal mucosa of patients with Alzheimer’s disease. Eur Neurol 40:31–36. doi:10.​1159/​000007953 PubMed
164.
Zurück zum Zitat Holmes C, Boche D, Wilkinson D, Yadegarfar G, Hopkins V, Bayer A, Jones RW, Bullock R, Love S, Neal JW, Zotova E, Nicoll JA (2008) Long-term effects of Abeta42 immunisation in Alzheimer’s disease: follow-up of a randomised, placebo-controlled phase I trial. Lancet 372:216–223. doi:10.1016/S0140-6736(08)61075-2 PubMed Holmes C, Boche D, Wilkinson D, Yadegarfar G, Hopkins V, Bayer A, Jones RW, Bullock R, Love S, Neal JW, Zotova E, Nicoll JA (2008) Long-term effects of Abeta42 immunisation in Alzheimer’s disease: follow-up of a randomised, placebo-controlled phase I trial. Lancet 372:216–223. doi:10.​1016/​S0140-6736(08)61075-2 PubMed
165.
Zurück zum Zitat Horowitz PM, Patterson KR, Guillozet-Bongaarts AL, Reynolds MR, Carroll CA, Weintraub ST, Bennett DA, Cryns VL, Berry RW, Binder LI (2004) Early N-terminal changes and caspase-6 cleavage of tau in Alzheimer’s disease. J Neurosci 24:7895–7902. doi:10.1523/JNEUROSCI.1988-04.2004 PubMed Horowitz PM, Patterson KR, Guillozet-Bongaarts AL, Reynolds MR, Carroll CA, Weintraub ST, Bennett DA, Cryns VL, Berry RW, Binder LI (2004) Early N-terminal changes and caspase-6 cleavage of tau in Alzheimer’s disease. J Neurosci 24:7895–7902. doi:10.​1523/​JNEUROSCI.​1988-04.​2004 PubMed
166.
170.
Zurück zum Zitat Jellinger KA, Bancher C (1998) Senile dementia with tangles (tangle predominant form of senile dementia). Brain Pathol 8:367–376PubMed Jellinger KA, Bancher C (1998) Senile dementia with tangles (tangle predominant form of senile dementia). Brain Pathol 8:367–376PubMed
171.
Zurück zum Zitat Jin K, Peel AL, Mao XO, Xie L, Cottrell BA, Henshall DC, Greenberg DA (2004) Increased hippocampal neurogenesis in Alzheimer’s disease. Proc Natl Acad Sci USA 101:343–347. doi:10.1073/pnas.2634794100 PubMed Jin K, Peel AL, Mao XO, Xie L, Cottrell BA, Henshall DC, Greenberg DA (2004) Increased hippocampal neurogenesis in Alzheimer’s disease. Proc Natl Acad Sci USA 101:343–347. doi:10.​1073/​pnas.​2634794100 PubMed
172.
Zurück zum Zitat Joachim C, Games D, Morris J, Ward P, Frenkel D, Selkoe D (1991) Antibodies to non-beta regions of the beta-amyloid precursor protein detect a subset of senile plaques. Am J Pathol 138:373–384PubMed Joachim C, Games D, Morris J, Ward P, Frenkel D, Selkoe D (1991) Antibodies to non-beta regions of the beta-amyloid precursor protein detect a subset of senile plaques. Am J Pathol 138:373–384PubMed
174.
Zurück zum Zitat Josephs KA, Whitwell JL, Ahmed Z, Shiung MM, Weigand SD, Knopman DS, Boeve BF, Parisi JE, Petersen RC, Dickson DW, Jack CR Jr (2008) Beta-amyloid burden is not associated with rates of brain atrophy. Ann Neurol 63:204–212. doi:10.1002/ana.21223 PubMed Josephs KA, Whitwell JL, Ahmed Z, Shiung MM, Weigand SD, Knopman DS, Boeve BF, Parisi JE, Petersen RC, Dickson DW, Jack CR Jr (2008) Beta-amyloid burden is not associated with rates of brain atrophy. Ann Neurol 63:204–212. doi:10.​1002/​ana.​21223 PubMed
175.
Zurück zum Zitat Josephs KA, Whitwell JL, Knopman DS, Hu WT, Stroh DA, Baker M, Rademakers R, Boeve BF, Parisi JE, Smith GE, Ivnik RJ, Petersen RC, Jack CR Jr, Dickson DW (2008) Abnormal TDP-43 immunoreactivity in AD modifies clinicopathologic and radiologic phenotype. Neurology 70:1850–1857. doi:10.1212/01.wnl.0000304041.09418.b1 PubMed Josephs KA, Whitwell JL, Knopman DS, Hu WT, Stroh DA, Baker M, Rademakers R, Boeve BF, Parisi JE, Smith GE, Ivnik RJ, Petersen RC, Jack CR Jr, Dickson DW (2008) Abnormal TDP-43 immunoreactivity in AD modifies clinicopathologic and radiologic phenotype. Neurology 70:1850–1857. doi:10.​1212/​01.​wnl.​0000304041.​09418.​b1 PubMed
176.
Zurück zum Zitat Kahn J, Anderton BH, Probst A, Ulrich J, Esiri M (1985) Immunologic studies of granulovacuolar degeneration using monoclonal antibodies to neurofilaments. J Neurol Neurosurg Psychiatry 48:926–927. doi:10.1136/jnnp.48.9.924 Kahn J, Anderton BH, Probst A, Ulrich J, Esiri M (1985) Immunologic studies of granulovacuolar degeneration using monoclonal antibodies to neurofilaments. J Neurol Neurosurg Psychiatry 48:926–927. doi:10.​1136/​jnnp.​48.​9.​924
177.
Zurück zum Zitat Katzman R, Terry R, DeTeresa R, Brown T, Davies P, Fuld P, Renbing X, Peck A (1988) Clinical, pathological, and neurochemical changes in dementia: a subgroup with preserved mental status and numerous neocortical plaques. Ann Neurol 23:138–144. doi:10.1002/ana.410230206 PubMed Katzman R, Terry R, DeTeresa R, Brown T, Davies P, Fuld P, Renbing X, Peck A (1988) Clinical, pathological, and neurochemical changes in dementia: a subgroup with preserved mental status and numerous neocortical plaques. Ann Neurol 23:138–144. doi:10.​1002/​ana.​410230206 PubMed
178.
Zurück zum Zitat Kemppainen N, Roytta M, Collan Y, Ma SY, Hinkka S, Rinne JO (2002) Unbiased morphological measurements show no neuronal loss in the substantia nigra in Alzheimer’s disease. Acta Neuropathol 103:43–47. doi:10.1007/s004010100425 PubMed Kemppainen N, Roytta M, Collan Y, Ma SY, Hinkka S, Rinne JO (2002) Unbiased morphological measurements show no neuronal loss in the substantia nigra in Alzheimer’s disease. Acta Neuropathol 103:43–47. doi:10.​1007/​s004010100425 PubMed
179.
Zurück zum Zitat Khachaturian ZS (1985) Diagnosis of Alzheimer’s disease. Arch Neurol 42:1097–1105PubMed Khachaturian ZS (1985) Diagnosis of Alzheimer’s disease. Arch Neurol 42:1097–1105PubMed
180.
Zurück zum Zitat Kidd M (1963) Paired helical filaments in electron microscopy in Alzheimer’s disease. Nature 197:262–268. doi:10.1038/197192b0 Kidd M (1963) Paired helical filaments in electron microscopy in Alzheimer’s disease. Nature 197:262–268. doi:10.​1038/​197192b0
183.
Zurück zum Zitat Knopman DS, Parisi JE, Salviati A, Floriach-Robert M, Boeve BF, Ivnik RJ, Smith GE, Dickson DW, Johnson KA, Petersen LE, McDonald WC, Braak H, Petersen RC (2003) Neuropathology of cognitively normal elderly. J Neuropathol Exp Neurol 62:1087–1095PubMed Knopman DS, Parisi JE, Salviati A, Floriach-Robert M, Boeve BF, Ivnik RJ, Smith GE, Dickson DW, Johnson KA, Petersen LE, McDonald WC, Braak H, Petersen RC (2003) Neuropathology of cognitively normal elderly. J Neuropathol Exp Neurol 62:1087–1095PubMed
188.
Zurück zum Zitat Kril JJ, Patel S, Harding AJ, Halliday GM (2002) Neuron loss from the hippocampus of Alzheimer’s disease exceeds extracellular neurofibrillary tangle formation. Acta Neuropathol 103:370–376. doi:10.1007/s00401-001-0477-5 PubMed Kril JJ, Patel S, Harding AJ, Halliday GM (2002) Neuron loss from the hippocampus of Alzheimer’s disease exceeds extracellular neurofibrillary tangle formation. Acta Neuropathol 103:370–376. doi:10.​1007/​s00401-001-0477-5 PubMed
190.
Zurück zum Zitat Lacor PN, Buniel MC, Furlow PW, Clemente AS, Velasco PT, Wood M, Viola KL, Klein WL (2007) Abeta oligomer-induced aberrations in synapse composition, shape, and density provide a molecular basis for loss of connectivity in Alzheimer’s disease. J Neurosci 27:796–807. doi:10.1523/JNEUROSCI.3501-06.2007 PubMed Lacor PN, Buniel MC, Furlow PW, Clemente AS, Velasco PT, Wood M, Viola KL, Klein WL (2007) Abeta oligomer-induced aberrations in synapse composition, shape, and density provide a molecular basis for loss of connectivity in Alzheimer’s disease. J Neurosci 27:796–807. doi:10.​1523/​JNEUROSCI.​3501-06.​2007 PubMed
191.
Zurück zum Zitat LaFerla FM, Troncoso JC, Strickland DK, Kawas CH, Jay G (1997) Neuronal cell death in Alzheimer’s disease correlates with apoE uptake and intracellular Abeta stabilization. J Clin Invest 100:310–320. doi:10.1172/JCI119536 PubMed LaFerla FM, Troncoso JC, Strickland DK, Kawas CH, Jay G (1997) Neuronal cell death in Alzheimer’s disease correlates with apoE uptake and intracellular Abeta stabilization. J Clin Invest 100:310–320. doi:10.​1172/​JCI119536 PubMed
192.
Zurück zum Zitat Lambert MP, Barlow AK, Chromy BA, Edwards C, Freed R, Liosatos M, Morgan TE, Rozovsky I, Trommer B, Viola KL, Wals P, Zhang C, Finch CE, Krafft GA, Klein WL (1998) Diffusible, nonfibrillar ligands derived from Abeta1-42 are potent central nervous system neurotoxins. Proc Natl Acad Sci USA 95:6448–6453. doi:10.1073/pnas.95.11.6448 PubMed Lambert MP, Barlow AK, Chromy BA, Edwards C, Freed R, Liosatos M, Morgan TE, Rozovsky I, Trommer B, Viola KL, Wals P, Zhang C, Finch CE, Krafft GA, Klein WL (1998) Diffusible, nonfibrillar ligands derived from Abeta1-42 are potent central nervous system neurotoxins. Proc Natl Acad Sci USA 95:6448–6453. doi:10.​1073/​pnas.​95.​11.​6448 PubMed
193.
Zurück zum Zitat Langui D, Girardot N, El Hachimi H, Allinquant B, Blanchard V, Pradier L, Duyckaerts C (2004) Subcellular topography of neuronal A-beta peptide in APPxPS1 transgenic mice. Am J Pathol 165:1465–1477PubMed Langui D, Girardot N, El Hachimi H, Allinquant B, Blanchard V, Pradier L, Duyckaerts C (2004) Subcellular topography of neuronal A-beta peptide in APPxPS1 transgenic mice. Am J Pathol 165:1465–1477PubMed
194.
Zurück zum Zitat Lantos PL, Ovenstone IM, Johnson J, Clelland CA, Roques P, Rossor MN (1994) Lewy bodies in the brain of two members of a family with the 717 (Val to Ile) mutation of the amyloid precursor protein gene. Neurosci Lett 172:77–79. doi:10.1016/0304-3940(94)90666-1 PubMed Lantos PL, Ovenstone IM, Johnson J, Clelland CA, Roques P, Rossor MN (1994) Lewy bodies in the brain of two members of a family with the 717 (Val to Ile) mutation of the amyloid precursor protein gene. Neurosci Lett 172:77–79. doi:10.​1016/​0304-3940(94)90666-1 PubMed
195.
Zurück zum Zitat Lassmann H, Bancher C, Breitschopf H, Wegiel J, Bobinski M, Jellinger K, Wisniewski HM (1995) Cell death in Alzheimer’s disease evaluated by DNA fragmentation in situ. Acta Neuropathol 89:35–41. doi:10.1007/BF00294257 PubMed Lassmann H, Bancher C, Breitschopf H, Wegiel J, Bobinski M, Jellinger K, Wisniewski HM (1995) Cell death in Alzheimer’s disease evaluated by DNA fragmentation in situ. Acta Neuropathol 89:35–41. doi:10.​1007/​BF00294257 PubMed
196.
Zurück zum Zitat Le TV, Crook R, Hardy J, Dickson DW (2001) Cotton wool plaques in non-familial late-onset Alzheimer disease. J Neuropathol Exp Neurol 60:1051–1061PubMed Le TV, Crook R, Hardy J, Dickson DW (2001) Cotton wool plaques in non-familial late-onset Alzheimer disease. J Neuropathol Exp Neurol 60:1051–1061PubMed
197.
198.
Zurück zum Zitat Lerch JP, Pruessner J, Zijdenbos AP, Collins DL, Teipel SJ, Hampel H, Evans AC (2008) Automated cortical thickness measurements from MRI can accurately separate Alzheimer’s patients from normal elderly controls. Neurobiol Aging 29:23–30. doi:10.1016/j.neurobiolaging.2006.09.013 PubMed Lerch JP, Pruessner J, Zijdenbos AP, Collins DL, Teipel SJ, Hampel H, Evans AC (2008) Automated cortical thickness measurements from MRI can accurately separate Alzheimer’s patients from normal elderly controls. Neurobiol Aging 29:23–30. doi:10.​1016/​j.​neurobiolaging.​2006.​09.​013 PubMed
199.
Zurück zum Zitat Leroy K, Yilmaz Z, Brion JP (2007) Increased level of active GSK-3beta in Alzheimer’s disease and accumulation in argyrophilic grains and in neurones at different stages of neurofibrillary degeneration. Neuropathol Appl Neurobiol 33:43–55. doi:10.1111/j.1365-2990.2006.00795.x PubMed Leroy K, Yilmaz Z, Brion JP (2007) Increased level of active GSK-3beta in Alzheimer’s disease and accumulation in argyrophilic grains and in neurones at different stages of neurofibrillary degeneration. Neuropathol Appl Neurobiol 33:43–55. doi:10.​1111/​j.​1365-2990.​2006.​00795.​x PubMed
200.
Zurück zum Zitat Leuba G, Savioz A, Vernay A, Carnal B, Kraftsik R, Tardif E, Riederer I, Riederer BM (2008) Differential changes in synaptic proteins in the Alzheimer frontal cortex with marked increase in PSD-95 postsynaptic protein. J Alzheimers Dis 15:139–151PubMed Leuba G, Savioz A, Vernay A, Carnal B, Kraftsik R, Tardif E, Riederer I, Riederer BM (2008) Differential changes in synaptic proteins in the Alzheimer frontal cortex with marked increase in PSD-95 postsynaptic protein. J Alzheimers Dis 15:139–151PubMed
201.
Zurück zum Zitat Leverenz JB, Fishel MA, Peskind ER, Montine TJ, Nochlin D, Steinbart E, Raskind MA, Schellenberg GD, Bird TD, Tsuang D (2006) Lewy body pathology in familial Alzheimer disease: evidence for disease- and mutation-specific pathologic phenotype. Arch Neurol 63:370–376. doi:10.1001/archneur.63.3.370 PubMed Leverenz JB, Fishel MA, Peskind ER, Montine TJ, Nochlin D, Steinbart E, Raskind MA, Schellenberg GD, Bird TD, Tsuang D (2006) Lewy body pathology in familial Alzheimer disease: evidence for disease- and mutation-specific pathologic phenotype. Arch Neurol 63:370–376. doi:10.​1001/​archneur.​63.​3.​370 PubMed
202.
Zurück zum Zitat Levy E, Carman MD, Fernandez-Madrid IJ, Power MD, Lieberburg I, van Duinen SG, Bots GT, Luyendijk W, Frangione B (1990) Mutation of the Alzheimer’s disease amyloid gene in hereditary cerebral hemorrhage, Dutch type. Science 248:1124–1126. doi:10.1126/science.2111584 PubMed Levy E, Carman MD, Fernandez-Madrid IJ, Power MD, Lieberburg I, van Duinen SG, Bots GT, Luyendijk W, Frangione B (1990) Mutation of the Alzheimer’s disease amyloid gene in hereditary cerebral hemorrhage, Dutch type. Science 248:1124–1126. doi:10.​1126/​science.​2111584 PubMed
203.
Zurück zum Zitat Li B, Yamamori H, Tatebayashi Y, Shafit-Zagardo B, Tanimukai H, Chen S, Iqbal K, Grundke-Iqbal I (2008) Failure of neuronal maturation in Alzheimer disease dentate gyrus. J Neuropathol Exp Neurol 67:78–84. doi:10.1097/nen.0b013e318160c5db PubMed Li B, Yamamori H, Tatebayashi Y, Shafit-Zagardo B, Tanimukai H, Chen S, Iqbal K, Grundke-Iqbal I (2008) Failure of neuronal maturation in Alzheimer disease dentate gyrus. J Neuropathol Exp Neurol 67:78–84. doi:10.​1097/​nen.​0b013e318160c5db​ PubMed
205.
Zurück zum Zitat Liu K, Solano I, Mann D, Lemere C, Mercken M, Trojanowski JQ, Lee VM (2006) Characterization of Abeta11-40/42 peptide deposition in Alzheimer’s disease and young Down’s syndrome brains: implication of N-terminally truncated Abeta species in the pathogenesis of Alzheimer’s disease. Acta Neuropathol 112:163–174. doi:10.1007/s00401-006-0077-5 PubMed Liu K, Solano I, Mann D, Lemere C, Mercken M, Trojanowski JQ, Lee VM (2006) Characterization of Abeta11-40/42 peptide deposition in Alzheimer’s disease and young Down’s syndrome brains: implication of N-terminally truncated Abeta species in the pathogenesis of Alzheimer’s disease. Acta Neuropathol 112:163–174. doi:10.​1007/​s00401-006-0077-5 PubMed
206.
Zurück zum Zitat Liu Y, Stern Y, Chun MR, Jacobs DM, Yau P, Goldman JE (1997) Pathological correlates of extrapyramidal signs in Alzheimer’s disease. Ann Neurol 41:368–374. doi:10.1002/ana.410410312 PubMed Liu Y, Stern Y, Chun MR, Jacobs DM, Yau P, Goldman JE (1997) Pathological correlates of extrapyramidal signs in Alzheimer’s disease. Ann Neurol 41:368–374. doi:10.​1002/​ana.​410410312 PubMed
207.
Zurück zum Zitat Lockhart A, Lamb JR, Osredkar T, Sue LI, Joyce JN, Ye L, Libri V, Leppert D, Beach TG (2007) PIB is a non-specific imaging marker of amyloid-beta (Abeta) peptide-related cerebral amyloidosis. Brain 130:2607–2615. doi:10.1093/brain/awm191 PubMed Lockhart A, Lamb JR, Osredkar T, Sue LI, Joyce JN, Ye L, Libri V, Leppert D, Beach TG (2007) PIB is a non-specific imaging marker of amyloid-beta (Abeta) peptide-related cerebral amyloidosis. Brain 130:2607–2615. doi:10.​1093/​brain/​awm191 PubMed
208.
Zurück zum Zitat Lucassen PJ, Chung WC, Kamphorst W, Swaab DF (1997) DNA damage distribution in the human brain as shown by in situ end labeling; area-specific differences in aging and Alzheimer disease in the absence of apoptotic morphology. J Neuropathol Exp Neurol 56:887–900. doi:10.1097/00005072-199708000-00007 PubMed Lucassen PJ, Chung WC, Kamphorst W, Swaab DF (1997) DNA damage distribution in the human brain as shown by in situ end labeling; area-specific differences in aging and Alzheimer disease in the absence of apoptotic morphology. J Neuropathol Exp Neurol 56:887–900. doi:10.​1097/​00005072-199708000-00007 PubMed
209.
Zurück zum Zitat Luse SA, Smith KR Jr (1964) The ultrastructure of senile plaques. Am J Pathol 44:553–563PubMed Luse SA, Smith KR Jr (1964) The ultrastructure of senile plaques. Am J Pathol 44:553–563PubMed
210.
Zurück zum Zitat Maat-Schieman ML, Yamaguchi H, van Duinen SG, Natte R, Roos RA (2000) Age-related plaque morphology and C-terminal heterogeneity of amyloid beta in Dutch-type hereditary cerebral hemorrhage with amyloidosis. Acta Neuropathol 99:409–419. doi:10.1007/s004010051143 PubMed Maat-Schieman ML, Yamaguchi H, van Duinen SG, Natte R, Roos RA (2000) Age-related plaque morphology and C-terminal heterogeneity of amyloid beta in Dutch-type hereditary cerebral hemorrhage with amyloidosis. Acta Neuropathol 99:409–419. doi:10.​1007/​s004010051143 PubMed
211.
Zurück zum Zitat MacGibbon GA, Lawlor PA, Walton M, Sirimanne E, Faull RL, Synek B, Mee E, Connor B, Dragunow M (1997) Expression of Fos, Jun, and Krox family proteins in Alzheimer’s disease. Exp Neurol 147:316–332. doi:10.1006/exnr.1997.6600 PubMed MacGibbon GA, Lawlor PA, Walton M, Sirimanne E, Faull RL, Synek B, Mee E, Connor B, Dragunow M (1997) Expression of Fos, Jun, and Krox family proteins in Alzheimer’s disease. Exp Neurol 147:316–332. doi:10.​1006/​exnr.​1997.​6600 PubMed
212.
Zurück zum Zitat Mandybur TI, Chuirazzi CC (1990) Astrocytes and the plaques of Alzheimer’s disease. Neurology 40:635–639PubMed Mandybur TI, Chuirazzi CC (1990) Astrocytes and the plaques of Alzheimer’s disease. Neurology 40:635–639PubMed
213.
Zurück zum Zitat Mann DM, Takeuchi A, Sato S, Cairns NJ, Lantos PL, Rossor MN, Haltia M, Kalimo H, Iwatsubo T (2001) Cases of Alzheimer’s disease due to deletion of exon 9 of the presenilin-1 gene show an unusual but characteristic beta-amyloid pathology known as ‘cotton wool’ plaques. Neuropathol Appl Neurobiol 27:189–196. doi:10.1046/j.1365-2990.2001.00316.x PubMed Mann DM, Takeuchi A, Sato S, Cairns NJ, Lantos PL, Rossor MN, Haltia M, Kalimo H, Iwatsubo T (2001) Cases of Alzheimer’s disease due to deletion of exon 9 of the presenilin-1 gene show an unusual but characteristic beta-amyloid pathology known as ‘cotton wool’ plaques. Neuropathol Appl Neurobiol 27:189–196. doi:10.​1046/​j.​1365-2990.​2001.​00316.​x PubMed
216.
Zurück zum Zitat Martin-Rehrmann MD, Hoe HS, Capuani EM, Rebeck GW (2005) Association of apolipoprotein J-positive beta-amyloid plaques with dystrophic neurites in Alzheimer’s disease brain. Neurotox Res 7:231–242PubMedCrossRef Martin-Rehrmann MD, Hoe HS, Capuani EM, Rebeck GW (2005) Association of apolipoprotein J-positive beta-amyloid plaques with dystrophic neurites in Alzheimer’s disease brain. Neurotox Res 7:231–242PubMedCrossRef
217.
Zurück zum Zitat Masliah E, Alford M, Adame A, Rockenstein E, Galasko D, Salmon D, Hansen LA, Thal LJ (2003) Abeta1-42 promotes cholinergic sprouting in patients with AD and Lewy body variant of AD. Neurology 61:206–211PubMed Masliah E, Alford M, Adame A, Rockenstein E, Galasko D, Salmon D, Hansen LA, Thal LJ (2003) Abeta1-42 promotes cholinergic sprouting in patients with AD and Lewy body variant of AD. Neurology 61:206–211PubMed
218.
Zurück zum Zitat Masliah E, Ellisman M, Carragher B, Mallory M, Young S, Hansen L, DeTeresa R, Terry RD (1992) Three-dimensional analysis of the relationship between synaptic pathology and neuropil threads in Alzheimer disease. J Neuropathol Exp Neurol 51:404–414. doi:10.1097/00005072-199207000-00003 PubMed Masliah E, Ellisman M, Carragher B, Mallory M, Young S, Hansen L, DeTeresa R, Terry RD (1992) Three-dimensional analysis of the relationship between synaptic pathology and neuropil threads in Alzheimer disease. J Neuropathol Exp Neurol 51:404–414. doi:10.​1097/​00005072-199207000-00003 PubMed
219.
Zurück zum Zitat Masliah E, Mallory M, Alford M, DeTeresa R, Hansen LA, McKeel DW Jr, Morris JC (2001) Altered expression of synaptic proteins occurs early during progression of Alzheimer’s disease. Neurology 56:127–129PubMed Masliah E, Mallory M, Alford M, DeTeresa R, Hansen LA, McKeel DW Jr, Morris JC (2001) Altered expression of synaptic proteins occurs early during progression of Alzheimer’s disease. Neurology 56:127–129PubMed
220.
221.
Zurück zum Zitat Masliah E, Terry RD, Mallory M, Alford M, Hansen LA (1990) Diffuse plaques do not accentuate synapse loss in Alzheimer’s disease. Am J Pathol 137:1293–1297PubMed Masliah E, Terry RD, Mallory M, Alford M, Hansen LA (1990) Diffuse plaques do not accentuate synapse loss in Alzheimer’s disease. Am J Pathol 137:1293–1297PubMed
222.
Zurück zum Zitat Matsuo ES, Shin RW, Billingsley ML, Van de Voorde A, O’Connor M, Trojanowski JQ, Lee VMY (1994) Biopsy-derived adult human tau is phosphorylated at many of the same sites as Alzheimer’s disease paired helical filament tau. Neuron 13:989–1002. doi:10.1016/0896-6273(94)90264-X PubMed Matsuo ES, Shin RW, Billingsley ML, Van de Voorde A, O’Connor M, Trojanowski JQ, Lee VMY (1994) Biopsy-derived adult human tau is phosphorylated at many of the same sites as Alzheimer’s disease paired helical filament tau. Neuron 13:989–1002. doi:10.​1016/​0896-6273(94)90264-X PubMed
225.
226.
Zurück zum Zitat McKeith IG, Dickson DW, Lowe J, Emre M, O’Brien JT, Feldman H, Cummings J, Duda JE, Lippa C, Perry EK, Aarsland D, Arai H, Ballard CG, Boeve B, Burn DJ, Costa D, Del Ser T, Dubois B, Galasko D, Gauthier S, Goetz CG, Gomez-Tortosa E, Halliday G, Hansen LA, Hardy J, Iwatsubo T, Kalaria RN, Kaufer D, Kenny RA, Korczyn A, Kosaka K, Lee VM, Lees A, Litvan I, Londos E, Lopez OL, Minoshima S, Mizuno Y, Molina JA, Mukaetova-Ladinska EB, Pasquier F, Perry RH, Schulz JB, Trojanowski JQ, Yamada M (2005) Diagnosis and management of dementia with Lewy bodies: third report of the DLB Consortium. Neurology 65:1863–1872. doi:10.1212/01.wnl.0000187889.17253.b1 PubMed McKeith IG, Dickson DW, Lowe J, Emre M, O’Brien JT, Feldman H, Cummings J, Duda JE, Lippa C, Perry EK, Aarsland D, Arai H, Ballard CG, Boeve B, Burn DJ, Costa D, Del Ser T, Dubois B, Galasko D, Gauthier S, Goetz CG, Gomez-Tortosa E, Halliday G, Hansen LA, Hardy J, Iwatsubo T, Kalaria RN, Kaufer D, Kenny RA, Korczyn A, Kosaka K, Lee VM, Lees A, Litvan I, Londos E, Lopez OL, Minoshima S, Mizuno Y, Molina JA, Mukaetova-Ladinska EB, Pasquier F, Perry RH, Schulz JB, Trojanowski JQ, Yamada M (2005) Diagnosis and management of dementia with Lewy bodies: third report of the DLB Consortium. Neurology 65:1863–1872. doi:10.​1212/​01.​wnl.​0000187889.​17253.​b1 PubMed
228.
Zurück zum Zitat Mesulam M, Shaw P, Mash D, Weintraub S (2004) Cholinergic nucleus basalis tauopathy emerges early in the aging-MCI-AD continuum. Ann Neurol 55:815–828. doi:10.1002/ana.20100 PubMed Mesulam M, Shaw P, Mash D, Weintraub S (2004) Cholinergic nucleus basalis tauopathy emerges early in the aging-MCI-AD continuum. Ann Neurol 55:815–828. doi:10.​1002/​ana.​20100 PubMed
229.
Zurück zum Zitat Mesulam M, Wicklund A, Johnson N, Rogalski E, Leger GC, Rademaker A, Weintraub S, Bigio EH (2008) Alzheimer and frontotemporal pathology in subsets of primary progressive aphasia. Ann Neurol 63:709–719. doi:10.1002/ana.21388 PubMed Mesulam M, Wicklund A, Johnson N, Rogalski E, Leger GC, Rademaker A, Weintraub S, Bigio EH (2008) Alzheimer and frontotemporal pathology in subsets of primary progressive aphasia. Ann Neurol 63:709–719. doi:10.​1002/​ana.​21388 PubMed
231.
Zurück zum Zitat Meyer-Luehmann M, Spires-Jones TL, Prada C, Garcia-Alloza M, de Calignon A, Rozkalne A, Koenigsknecht-Talboo J, Holtzman DM, Bacskai BJ, Hyman BT (2008) Rapid appearance and local toxicity of amyloid-beta plaques in a mouse model of Alzheimer’s disease. Nature 451:720–724. doi:10.1038/nature06616 PubMed Meyer-Luehmann M, Spires-Jones TL, Prada C, Garcia-Alloza M, de Calignon A, Rozkalne A, Koenigsknecht-Talboo J, Holtzman DM, Bacskai BJ, Hyman BT (2008) Rapid appearance and local toxicity of amyloid-beta plaques in a mouse model of Alzheimer’s disease. Nature 451:720–724. doi:10.​1038/​nature06616 PubMed
232.
Zurück zum Zitat Miravalle L, Calero M, Takao M, Roher AE, Ghetti B, Vidal R (2005) Amino-terminally truncated Abeta peptide species are the main component of cotton wool plaques. Biochemistry 44:10810–10821. doi:10.1021/bi0508237 PubMed Miravalle L, Calero M, Takao M, Roher AE, Ghetti B, Vidal R (2005) Amino-terminally truncated Abeta peptide species are the main component of cotton wool plaques. Biochemistry 44:10810–10821. doi:10.​1021/​bi0508237 PubMed
233.
Zurück zum Zitat Mirra SS, Gearing M, McKeel DW, Crain BJ, Hughes JP, Van Belle G, Heyman A (1994) Interlaboratory comparison of neuropathology assessments in Alzheimer’s disease: a study of the consortium to establish a registry for Alzheimer’s disease (CERAD). J Neuropathol Exp Neurol 53:303–315. doi:10.1097/00005072-199405000-00012 PubMed Mirra SS, Gearing M, McKeel DW, Crain BJ, Hughes JP, Van Belle G, Heyman A (1994) Interlaboratory comparison of neuropathology assessments in Alzheimer’s disease: a study of the consortium to establish a registry for Alzheimer’s disease (CERAD). J Neuropathol Exp Neurol 53:303–315. doi:10.​1097/​00005072-199405000-00012 PubMed
234.
Zurück zum Zitat Mirra SS, Heyman A, McKeel D, Sumi SM, Crain BJ, Brownlee LM, Vogel FS, Hughes JP, van Belle G, Berg L (1991) The consortium to establish a registry for Alzheimer’s disease (CERAD). Part II. Standardization of the neuropathological assessment of Alzheimer’s disease. Neurology 41:479–486PubMed Mirra SS, Heyman A, McKeel D, Sumi SM, Crain BJ, Brownlee LM, Vogel FS, Hughes JP, van Belle G, Berg L (1991) The consortium to establish a registry for Alzheimer’s disease (CERAD). Part II. Standardization of the neuropathological assessment of Alzheimer’s disease. Neurology 41:479–486PubMed
235.
Zurück zum Zitat Moller H, Graeber M (1998) The case described by Alois Alzheimer in 1911. Historical and conceptual perspectives based on the clinical record and neurohistological sections. Eur Arch Psychiatry Clin Neurosci 248:111–122. doi:10.1007/s004060050027 PubMed Moller H, Graeber M (1998) The case described by Alois Alzheimer in 1911. Historical and conceptual perspectives based on the clinical record and neurohistological sections. Eur Arch Psychiatry Clin Neurosci 248:111–122. doi:10.​1007/​s004060050027 PubMed
236.
Zurück zum Zitat Mori T, Paris D, Town T, Rojiani AM, Sparks DL, Delledonne A, Crawford F, Abdullah LI, Humphrey JA, Dickson DW, Mullan MJ (2001) Cholesterol accumulates in senile plaques of Alzheimer disease patients and in transgenic APP(SW) mice. J Neuropathol Exp Neurol 60:778–785PubMed Mori T, Paris D, Town T, Rojiani AM, Sparks DL, Delledonne A, Crawford F, Abdullah LI, Humphrey JA, Dickson DW, Mullan MJ (2001) Cholesterol accumulates in senile plaques of Alzheimer disease patients and in transgenic APP(SW) mice. J Neuropathol Exp Neurol 60:778–785PubMed
238.
Zurück zum Zitat Mukaetova-Ladinska EB, Garcia-Siera F, Hurt J, Gertz HJ, Xuereb JH, Hills R, Brayne C, Huppert FA, Paykel ES, McGee M, Jakes R, Honer WG, Harrington CR, Wischik CM (2000) Staging of cytoskeletal and beta-amyloid changes in human isocortex reveals biphasic synaptic protein response during progression of Alzheimer’s disease. Am J Pathol 157:623–636PubMed Mukaetova-Ladinska EB, Garcia-Siera F, Hurt J, Gertz HJ, Xuereb JH, Hills R, Brayne C, Huppert FA, Paykel ES, McGee M, Jakes R, Honer WG, Harrington CR, Wischik CM (2000) Staging of cytoskeletal and beta-amyloid changes in human isocortex reveals biphasic synaptic protein response during progression of Alzheimer’s disease. Am J Pathol 157:623–636PubMed
240.
Zurück zum Zitat Munoz DG, Wang D (1992) Tangle-associated neuritic clusters. A new lesion in Alzheimer’s disease and aging suggests that aggregates of dystrophic neurites are not necessarily associated with beta/A4. Am J Pathol 140:1167–1178PubMed Munoz DG, Wang D (1992) Tangle-associated neuritic clusters. A new lesion in Alzheimer’s disease and aging suggests that aggregates of dystrophic neurites are not necessarily associated with beta/A4. Am J Pathol 140:1167–1178PubMed
241.
Zurück zum Zitat Munoz DG, Woulfe J, Kertesz A (2007) Argyrophilic thorny astrocyte clusters in association with Alzheimer’s disease pathology in possible primary progressive aphasia. Acta Neuropathol 114:347–357. doi:10.1007/s00401-007-0266-x PubMed Munoz DG, Woulfe J, Kertesz A (2007) Argyrophilic thorny astrocyte clusters in association with Alzheimer’s disease pathology in possible primary progressive aphasia. Acta Neuropathol 114:347–357. doi:10.​1007/​s00401-007-0266-x PubMed
243.
Zurück zum Zitat Nagy Z, Esiri MM, Jobst KA, Morris JH, King EM, McDonald B, Litchfield S, Smith A, Barnetson L, Smith AD (1995) Relative roles of plaques and tangles in the dementia of Alzheimer’s disease: correlations using three sets of neuropathological criteria. Dementia 6:21–31PubMed Nagy Z, Esiri MM, Jobst KA, Morris JH, King EM, McDonald B, Litchfield S, Smith A, Barnetson L, Smith AD (1995) Relative roles of plaques and tangles in the dementia of Alzheimer’s disease: correlations using three sets of neuropathological criteria. Dementia 6:21–31PubMed
244.
Zurück zum Zitat Namba Y, Tomonaga M, Kawasaki H, Otomo E, Ikeda K (1991) Apolipoprotein E immunoreactivity in cerebral amyloid deposits and neurofibrillary tangles in Alzheimer’s disease and kuru plaque amyloid in Creutzfeldt–Jakob disease. Brain Res 541:163–166. doi:10.1016/0006-8993(91)91092-F PubMed Namba Y, Tomonaga M, Kawasaki H, Otomo E, Ikeda K (1991) Apolipoprotein E immunoreactivity in cerebral amyloid deposits and neurofibrillary tangles in Alzheimer’s disease and kuru plaque amyloid in Creutzfeldt–Jakob disease. Brain Res 541:163–166. doi:10.​1016/​0006-8993(91)91092-F PubMed
245.
Zurück zum Zitat Naslund J, Haroutunian V, Mohs R, Davis KL, Davies P, Greengard P, Buxbaum JD (2000) Correlation between elevated levels of amyloid beta-peptide in the brain and cognitive decline. JAMA 283:1571–1577. doi:10.1001/jama.283.12.1571 PubMed Naslund J, Haroutunian V, Mohs R, Davis KL, Davies P, Greengard P, Buxbaum JD (2000) Correlation between elevated levels of amyloid beta-peptide in the brain and cognitive decline. JAMA 283:1571–1577. doi:10.​1001/​jama.​283.​12.​1571 PubMed
247.
Zurück zum Zitat Neuropathology Group, Medical Research Council Cognitive Function and Aging Study (2001) Pathological correlates of late-onset dementia in a multicentre, community-based population in England and Wales. Neuropathology Group of the Medical Research Council Cognitive Function and Ageing Study (MRC CFAS). Lancet 357:169–175 Neuropathology Group, Medical Research Council Cognitive Function and Aging Study (2001) Pathological correlates of late-onset dementia in a multicentre, community-based population in England and Wales. Neuropathology Group of the Medical Research Council Cognitive Function and Ageing Study (MRC CFAS). Lancet 357:169–175
248.
Zurück zum Zitat Nicoll JA, Barton E, Boche D, Neal JW, Ferrer I, Thompson P, Vlachouli C, Wilkinson D, Bayer A, Games D, Seubert P, Schenk D, Holmes C (2006) Abeta species removal after abeta42 immunization. J Neuropathol Exp Neurol 65:1040–1048. doi:10.1097/01.jnen.0000240466.10758.ce PubMed Nicoll JA, Barton E, Boche D, Neal JW, Ferrer I, Thompson P, Vlachouli C, Wilkinson D, Bayer A, Games D, Seubert P, Schenk D, Holmes C (2006) Abeta species removal after abeta42 immunization. J Neuropathol Exp Neurol 65:1040–1048. doi:10.​1097/​01.​jnen.​0000240466.​10758.​ce PubMed
249.
Zurück zum Zitat Oakley H, Cole SL, Logan S, Maus E, Shao P, Craft J, Guillozet-Bongaarts A, Ohno M, Disterhoft J, Van Eldik L, Berry R, Vassar R (2006) Intraneuronal beta-amyloid aggregates, neurodegeneration, and neuron loss in transgenic mice with five familial Alzheimer’s disease mutations: potential factors in amyloid plaque formation. J Neurosci 26:10129–10140. doi:10.1523/JNEUROSCI.1202-06.2006 PubMed Oakley H, Cole SL, Logan S, Maus E, Shao P, Craft J, Guillozet-Bongaarts A, Ohno M, Disterhoft J, Van Eldik L, Berry R, Vassar R (2006) Intraneuronal beta-amyloid aggregates, neurodegeneration, and neuron loss in transgenic mice with five familial Alzheimer’s disease mutations: potential factors in amyloid plaque formation. J Neurosci 26:10129–10140. doi:10.​1523/​JNEUROSCI.​1202-06.​2006 PubMed
250.
Zurück zum Zitat Oddo S, Caccamo A, Shepherd JD, Murphy MP, Golde TE, Kayed R, Metherate R, Mattson MP, Akbari Y, LaFerla FM (2003) Triple-transgenic model of Alzheimer’s disease with plaques and tangles: intracellular Abeta and synaptic dysfunction. Neuron 39:409–421. doi:10.1016/S0896-6273(03)00434-3 PubMed Oddo S, Caccamo A, Shepherd JD, Murphy MP, Golde TE, Kayed R, Metherate R, Mattson MP, Akbari Y, LaFerla FM (2003) Triple-transgenic model of Alzheimer’s disease with plaques and tangles: intracellular Abeta and synaptic dysfunction. Neuron 39:409–421. doi:10.​1016/​S0896-6273(03)00434-3 PubMed
252.
254.
255.
Zurück zum Zitat Padmanabhan J, Levy M, Dickson DW, Potter H (2006) Alpha1-antichymotrypsin, an inflammatory protein overexpressed in Alzheimer’s disease brain, induces tau phosphorylation in neurons. Brain 129:3020–3034. doi:10.1093/brain/awl255 PubMed Padmanabhan J, Levy M, Dickson DW, Potter H (2006) Alpha1-antichymotrypsin, an inflammatory protein overexpressed in Alzheimer’s disease brain, induces tau phosphorylation in neurons. Brain 129:3020–3034. doi:10.​1093/​brain/​awl255 PubMed
257.
Zurück zum Zitat Perry G, Friedman R, Shaw G, Chau V (1987) Ubiquitin is detected in neurofibrillary tangles and senile plaques neurites of Alzheimer disease brains. Proc Natl Acad Sci USA 84:3033–3036. doi:10.1073/pnas.84.9.3033 PubMed Perry G, Friedman R, Shaw G, Chau V (1987) Ubiquitin is detected in neurofibrillary tangles and senile plaques neurites of Alzheimer disease brains. Proc Natl Acad Sci USA 84:3033–3036. doi:10.​1073/​pnas.​84.​9.​3033 PubMed
258.
Zurück zum Zitat Perry G, Siedlak SL, Richey P, Kawai M, Cras P, Kalaria RN, Galloway PG, Scardina JM, Cordell B, Greenberg BD et al (1991) Association of heparan sulfate proteoglycan with the neurofibrillary tangles of Alzheimer’s disease. J Neurosci 11:3679–3683PubMed Perry G, Siedlak SL, Richey P, Kawai M, Cras P, Kalaria RN, Galloway PG, Scardina JM, Cordell B, Greenberg BD et al (1991) Association of heparan sulfate proteoglycan with the neurofibrillary tangles of Alzheimer’s disease. J Neurosci 11:3679–3683PubMed
259.
Zurück zum Zitat Phinney AL, Deller T, Stalder M, Calhoun ME, Frotscher M, Sommer B, Staufenbiel M, Jucker M (1999) Cerebral amyloid induces aberrant axonal sprouting and ectopic terminal formation in amyloid precursor protein transgenic mice. J Neurosci 19:8552–8559PubMed Phinney AL, Deller T, Stalder M, Calhoun ME, Frotscher M, Sommer B, Staufenbiel M, Jucker M (1999) Cerebral amyloid induces aberrant axonal sprouting and ectopic terminal formation in amyloid precursor protein transgenic mice. J Neurosci 19:8552–8559PubMed
260.
Zurück zum Zitat Pollanen P, Markiewicz P, Bergeron C, Goh MC (1994) Twisted ribbon structure of paired helical filaments revealed by atomic force microscopy. Am J Pathol 144:869–873PubMed Pollanen P, Markiewicz P, Bergeron C, Goh MC (1994) Twisted ribbon structure of paired helical filaments revealed by atomic force microscopy. Am J Pathol 144:869–873PubMed
261.
263.
Zurück zum Zitat Probst A, Anderton BH, Brion JP, Ulrich J (1989) Senile plaque neurites fail to demonstrate anti-paired helical filament and anti-microtubule-associated protein tau immunoreactive proteins in the absence of neurofibrillary tangles in the neocortex. Acta Neuropathol 77:430–436. doi:10.1007/BF00687379 PubMed Probst A, Anderton BH, Brion JP, Ulrich J (1989) Senile plaque neurites fail to demonstrate anti-paired helical filament and anti-microtubule-associated protein tau immunoreactive proteins in the absence of neurofibrillary tangles in the neocortex. Acta Neuropathol 77:430–436. doi:10.​1007/​BF00687379 PubMed
264.
265.
Zurück zum Zitat Probst A, Herzig MC, Mistl C, Ipsen S, Tolnay M (2001) Perisomatic granules (non-plaque dystrophic neurites) of hippocampal CA1 in Alzheimer’s disease and Pick’s disease: a lesion distinct from granulovacuolar degeneration. Acta Neuropathol 102:636–644PubMed Probst A, Herzig MC, Mistl C, Ipsen S, Tolnay M (2001) Perisomatic granules (non-plaque dystrophic neurites) of hippocampal CA1 in Alzheimer’s disease and Pick’s disease: a lesion distinct from granulovacuolar degeneration. Acta Neuropathol 102:636–644PubMed
266.
Zurück zum Zitat Puzzo D, Privitera L, Leznik E, Fa M, Staniszewski A, Palmeri A, Arancio O (2008) Picomolar amyloid-beta positively modulates synaptic plasticity and memory in hippocampus. J Neurosci 28:14537–14545. doi:10.1523/JNEUROSCI.2692-08.2008 PubMed Puzzo D, Privitera L, Leznik E, Fa M, Staniszewski A, Palmeri A, Arancio O (2008) Picomolar amyloid-beta positively modulates synaptic plasticity and memory in hippocampus. J Neurosci 28:14537–14545. doi:10.​1523/​JNEUROSCI.​2692-08.​2008 PubMed
267.
Zurück zum Zitat Raina AK, Hochman A, Zhu X, Rottkamp CA, Nunomura A, Siedlak SL, Boux H, Castellani RJ, Perry G, Smith MA (2001) Abortive apoptosis in Alzheimer’s disease. Acta Neuropathol 101:305–310PubMed Raina AK, Hochman A, Zhu X, Rottkamp CA, Nunomura A, Siedlak SL, Boux H, Castellani RJ, Perry G, Smith MA (2001) Abortive apoptosis in Alzheimer’s disease. Acta Neuropathol 101:305–310PubMed
268.
Zurück zum Zitat Redlich E (1898) Über miliare sklerose der Hirnrinde bei seniler Atrophie. Jahrb Psychol Neurol 17:208–216 Redlich E (1898) Über miliare sklerose der Hirnrinde bei seniler Atrophie. Jahrb Psychol Neurol 17:208–216
269.
Zurück zum Zitat Regeur L, Badsberg Jensen G, Pakkenberg H, Evans SM, Pakkenberg B (1994) No global neocortical nerve cell loss in brains from patients with senile dementia of Alzheimer’s type. Neurobiol Aging 15:347–352. doi:10.1016/0197-4580(94)90030-2 PubMed Regeur L, Badsberg Jensen G, Pakkenberg H, Evans SM, Pakkenberg B (1994) No global neocortical nerve cell loss in brains from patients with senile dementia of Alzheimer’s type. Neurobiol Aging 15:347–352. doi:10.​1016/​0197-4580(94)90030-2 PubMed
270.
Zurück zum Zitat Renner JA, Burns JM, Hou CE, McKeel DW Jr, Storandt M, Morris JC (2004) Progressive posterior cortical dysfunction: a clinicopathologic series. Neurology 63:1175–1180PubMed Renner JA, Burns JM, Hou CE, McKeel DW Jr, Storandt M, Morris JC (2004) Progressive posterior cortical dysfunction: a clinicopathologic series. Neurology 63:1175–1180PubMed
271.
Zurück zum Zitat Riley KP, Snowdon DA, Markesbery WR (2002) Alzheimer’s neurofibrillary pathology and the spectrum of cognitive function: findings from the Nun Study. Ann Neurol 51:567–577. doi:10.1002/ana.10161 PubMed Riley KP, Snowdon DA, Markesbery WR (2002) Alzheimer’s neurofibrillary pathology and the spectrum of cognitive function: findings from the Nun Study. Ann Neurol 51:567–577. doi:10.​1002/​ana.​10161 PubMed
273.
Zurück zum Zitat Rovelet-Lecrux A, Hannequin D, Raux G, Le Meur N, Laquerriere A, Vital A, Dumanchin C, Feuillette S, Brice A, Vercelletto M, Dubas F, Frebourg T, Campion D (2006) APP locus duplication causes autosomal dominant early-onset Alzheimer disease with cerebral amyloid angiopathy. Nat Genet 38:24–26. doi:10.1038/ng1718 PubMed Rovelet-Lecrux A, Hannequin D, Raux G, Le Meur N, Laquerriere A, Vital A, Dumanchin C, Feuillette S, Brice A, Vercelletto M, Dubas F, Frebourg T, Campion D (2006) APP locus duplication causes autosomal dominant early-onset Alzheimer disease with cerebral amyloid angiopathy. Nat Genet 38:24–26. doi:10.​1038/​ng1718 PubMed
274.
Zurück zum Zitat Rüb U, Del Tredici K, Del Turco D, Braak H (2002) The intralaminar nuclei assigned to the medial pain system and other components of this system are early and progressively affected by the Alzheimer’s disease-related cytoskeletal pathology. J Chem Neuroanat 23:279–290. doi:10.1016/S0891-0618(02)00007-8 PubMed Rüb U, Del Tredici K, Del Turco D, Braak H (2002) The intralaminar nuclei assigned to the medial pain system and other components of this system are early and progressively affected by the Alzheimer’s disease-related cytoskeletal pathology. J Chem Neuroanat 23:279–290. doi:10.​1016/​S0891-0618(02)00007-8 PubMed
275.
Zurück zum Zitat Rüb U, Del Tredici K, Schultz C, Thal DR, Braak E, Braak H (2001) The autonomic higher order processing nuclei of the lower brain stem are among the early targets of the Alzheimer’s disease-related cytoskeletal pathology. Acta Neuropathol 101:555–564PubMed Rüb U, Del Tredici K, Schultz C, Thal DR, Braak E, Braak H (2001) The autonomic higher order processing nuclei of the lower brain stem are among the early targets of the Alzheimer’s disease-related cytoskeletal pathology. Acta Neuropathol 101:555–564PubMed
276.
Zurück zum Zitat Ruben GC, Iqbal K, Grundke-Iqbal I (1995) Helical ribbon morphology in neurofibrillary tangles of paired helical filaments. In: Iqbal K, Mortimer JA, Winbladet B, Wisniewski HM (eds) Research advances in Alzheimer’s disease and related disorders. Wiley, Chichester, pp 477–485 Ruben GC, Iqbal K, Grundke-Iqbal I (1995) Helical ribbon morphology in neurofibrillary tangles of paired helical filaments. In: Iqbal K, Mortimer JA, Winbladet B, Wisniewski HM (eds) Research advances in Alzheimer’s disease and related disorders. Wiley, Chichester, pp 477–485
277.
Zurück zum Zitat Rufenacht P, Guntert A, Bohrmann B, Ducret A, Dobeli H (2005) Quantification of the A beta peptide in Alzheimer’s plaques by laser dissection microscopy combined with mass spectrometry. J Mass Spectrom 40:193–201. doi:10.1002/jms.739 PubMed Rufenacht P, Guntert A, Bohrmann B, Ducret A, Dobeli H (2005) Quantification of the A beta peptide in Alzheimer’s plaques by laser dissection microscopy combined with mass spectrometry. J Mass Spectrom 40:193–201. doi:10.​1002/​jms.​739 PubMed
278.
Zurück zum Zitat Sassin I, Schultz C, Thal DR, Rub U, Arai K, Braak E, Braak H (2000) Evolution of Alzheimer’s disease-related cytoskeletal changes in the basal nucleus of Meynert. Acta Neuropathol 100:259–269. doi:10.1007/s004019900178 PubMed Sassin I, Schultz C, Thal DR, Rub U, Arai K, Braak E, Braak H (2000) Evolution of Alzheimer’s disease-related cytoskeletal changes in the basal nucleus of Meynert. Acta Neuropathol 100:259–269. doi:10.​1007/​s004019900178 PubMed
282.
Zurück zum Zitat Scheff SW, Sparks DL, Price DA (1996) Quantitative assessment of synaptic density in the outer molecular layer of the hippocampal dentate gyrus in Alzheimer’s disease. Dementia 7:226–232PubMed Scheff SW, Sparks DL, Price DA (1996) Quantitative assessment of synaptic density in the outer molecular layer of the hippocampal dentate gyrus in Alzheimer’s disease. Dementia 7:226–232PubMed
283.
Zurück zum Zitat Schmidt M, Lee V, Trojanowski J (1991) Comparative epitope analysis of neuronal cytoskeletal proteins in Alzheimer’s disease senile plaque, neurites and neuropil threads. Lab Invest 64:352–357PubMed Schmidt M, Lee V, Trojanowski J (1991) Comparative epitope analysis of neuronal cytoskeletal proteins in Alzheimer’s disease senile plaque, neurites and neuropil threads. Lab Invest 64:352–357PubMed
285.
Zurück zum Zitat Schultz C, Ghebremedhin E, Braak H, Braak E (1997) Neurofibrillary pathology in the human paraventricular and supraoptic nuclei. Acta Neuropathol 94:99–102. doi:10.1007/s004010050679 PubMed Schultz C, Ghebremedhin E, Braak H, Braak E (1997) Neurofibrillary pathology in the human paraventricular and supraoptic nuclei. Acta Neuropathol 94:99–102. doi:10.​1007/​s004010050679 PubMed
286.
289.
Zurück zum Zitat Shankar GM, Li S, Mehta TH, Garcia-Munoz A, Shepardson NE, Smith I, Brett FM, Farrell MA, Rowan MJ, Lemere CA, Regan CM, Walsh DM, Sabatini BL, Selkoe DJ (2008) Amyloid-beta protein dimers isolated directly from Alzheimer’s brains impair synaptic plasticity and memory. Nat Med 14:837–842. doi:10.1038/nm1782 PubMed Shankar GM, Li S, Mehta TH, Garcia-Munoz A, Shepardson NE, Smith I, Brett FM, Farrell MA, Rowan MJ, Lemere CA, Regan CM, Walsh DM, Sabatini BL, Selkoe DJ (2008) Amyloid-beta protein dimers isolated directly from Alzheimer’s brains impair synaptic plasticity and memory. Nat Med 14:837–842. doi:10.​1038/​nm1782 PubMed
290.
Zurück zum Zitat Sheng JG, Price DL, Koliatsos VE (2002) Disruption of corticocortical connections ameliorates amyloid burden in terminal fields in a transgenic model of Abeta amyloidosis. J Neurosci 22:9794–9799PubMed Sheng JG, Price DL, Koliatsos VE (2002) Disruption of corticocortical connections ameliorates amyloid burden in terminal fields in a transgenic model of Abeta amyloidosis. J Neurosci 22:9794–9799PubMed
292.
Zurück zum Zitat Shibata M, Yamada S, Kumar SR, Calero M, Bading J, Frangione B, Holtzman DM, Miller CA, Strickland DK, Ghiso J, Zlokovic BV (2000) Clearance of Alzheimer’s amyloid-ss(-40) peptide from brain by LDL receptor-related protein-1 at the blood-brain barrier. J Clin Invest 106:1489–1499. doi:10.1172/JCI10498 PubMed Shibata M, Yamada S, Kumar SR, Calero M, Bading J, Frangione B, Holtzman DM, Miller CA, Strickland DK, Ghiso J, Zlokovic BV (2000) Clearance of Alzheimer’s amyloid-ss(-40) peptide from brain by LDL receptor-related protein-1 at the blood-brain barrier. J Clin Invest 106:1489–1499. doi:10.​1172/​JCI10498 PubMed
293.
Zurück zum Zitat Shimohama S, Kamiya S, Taniguchi T, Akagawa K, Kimura J (1997) Differential involvement of synaptic vesicle and presynaptic plasma membrane proteins in Alzheimer’s disease. Biochem Biophys Res Commun 236:239–242. doi:10.1006/bbrc.1997.6940 PubMed Shimohama S, Kamiya S, Taniguchi T, Akagawa K, Kimura J (1997) Differential involvement of synaptic vesicle and presynaptic plasma membrane proteins in Alzheimer’s disease. Biochem Biophys Res Commun 236:239–242. doi:10.​1006/​bbrc.​1997.​6940 PubMed
294.
Zurück zum Zitat Shin RW, Ogino K, Shimabuku A, Taki T, Nakashima H, Ishihara T, Kitamoto T (2007) Amyloid precursor protein cytoplasmic domain with phospho-Thr668 accumulates in Alzheimer’s disease and its transgenic models: a role to mediate interaction of Abeta and tau. Acta Neuropathol 113:627–636. doi:10.1007/s00401-007-0211-z PubMed Shin RW, Ogino K, Shimabuku A, Taki T, Nakashima H, Ishihara T, Kitamoto T (2007) Amyloid precursor protein cytoplasmic domain with phospho-Thr668 accumulates in Alzheimer’s disease and its transgenic models: a role to mediate interaction of Abeta and tau. Acta Neuropathol 113:627–636. doi:10.​1007/​s00401-007-0211-z PubMed
295.
Zurück zum Zitat Smith TW, Anwer U, DeGirolami U, Drachman DA (1987) Vacuolar change in Alzheimer’s disease. Arch Neurol 44:1225–1228PubMed Smith TW, Anwer U, DeGirolami U, Drachman DA (1987) Vacuolar change in Alzheimer’s disease. Arch Neurol 44:1225–1228PubMed
297.
Zurück zum Zitat Snowdon DA, Greiner LH, Mortimer JA, Riley KP, Greiner PA, Markesbery WR (1997) Brain infarction and the clinical expression of Alzheimer’s disease: the nun study. JAMA 277:813–817. doi:10.1001/jama.277.10.813 PubMed Snowdon DA, Greiner LH, Mortimer JA, Riley KP, Greiner PA, Markesbery WR (1997) Brain infarction and the clinical expression of Alzheimer’s disease: the nun study. JAMA 277:813–817. doi:10.​1001/​jama.​277.​10.​813 PubMed
298.
Zurück zum Zitat Spires-Jones TL, Meyer-Luehmann M, Osetek JD, Jones PB, Stern EA, Bacskai BJ, Hyman BT (2007) Impaired spine stability underlies plaque-related spine loss in an Alzheimer’s disease mouse model. Am J Pathol 171:1304–1311. doi:10.2353/ajpath.2007.070055 PubMed Spires-Jones TL, Meyer-Luehmann M, Osetek JD, Jones PB, Stern EA, Bacskai BJ, Hyman BT (2007) Impaired spine stability underlies plaque-related spine loss in an Alzheimer’s disease mouse model. Am J Pathol 171:1304–1311. doi:10.​2353/​ajpath.​2007.​070055 PubMed
299.
Zurück zum Zitat Stadelmann C, Bruck W, Bancher C, Jellinger K, Lassmann H (1998) Alzheimer disease: DNA fragmentation indicates increased neuronal vulnerability, but not apoptosis. J Neuropathol Exp Neurol 57:456–464. doi:10.1097/00005072-199805000-00009 PubMed Stadelmann C, Bruck W, Bancher C, Jellinger K, Lassmann H (1998) Alzheimer disease: DNA fragmentation indicates increased neuronal vulnerability, but not apoptosis. J Neuropathol Exp Neurol 57:456–464. doi:10.​1097/​00005072-199805000-00009 PubMed
300.
Zurück zum Zitat Stadelmann C, Deckwerth TL, Srinivasan A, Bancher C, Bruck W, Jellinger K, Lassmann H (1999) Activation of caspase-3 in single neurons and autophagic granules of granulovacuolar degeneration in Alzheimer’s disease: evidence for apoptotic cell death. Am J Pathol 155:1459–1466PubMed Stadelmann C, Deckwerth TL, Srinivasan A, Bancher C, Bruck W, Jellinger K, Lassmann H (1999) Activation of caspase-3 in single neurons and autophagic granules of granulovacuolar degeneration in Alzheimer’s disease: evidence for apoptotic cell death. Am J Pathol 155:1459–1466PubMed
301.
Zurück zum Zitat Steinerman JR, Irizarry M, Scarmeas N, Raju S, Brandt J, Albert M, Blacker D, Hyman B, Stern Y (2008) Distinct pools of beta-amyloid in Alzheimer disease-affected brain: a clinicopathologic study. Arch Neurol 65:906–912. doi:10.1001/archneur.65.7.906 PubMed Steinerman JR, Irizarry M, Scarmeas N, Raju S, Brandt J, Albert M, Blacker D, Hyman B, Stern Y (2008) Distinct pools of beta-amyloid in Alzheimer disease-affected brain: a clinicopathologic study. Arch Neurol 65:906–912. doi:10.​1001/​archneur.​65.​7.​906 PubMed
302.
Zurück zum Zitat Sterio DC (1984) The unbiased estimation of number and sizes of arbitrary particles using the disector. J Microsc 134:127–136PubMed Sterio DC (1984) The unbiased estimation of number and sizes of arbitrary particles using the disector. J Microsc 134:127–136PubMed
303.
Zurück zum Zitat Stoltenberg M, Bruhn M, Sondergaard C, Doering P, West MJ, Larsen A, Troncoso JC, Danscher G (2005) Immersion autometallographic tracing of zinc ions in Alzheimer beta-amyloid plaques. Histochem Cell Biol 123:605–611. doi:10.1007/s00418-005-0787-0 PubMed Stoltenberg M, Bruhn M, Sondergaard C, Doering P, West MJ, Larsen A, Troncoso JC, Danscher G (2005) Immersion autometallographic tracing of zinc ions in Alzheimer beta-amyloid plaques. Histochem Cell Biol 123:605–611. doi:10.​1007/​s00418-005-0787-0 PubMed
304.
Zurück zum Zitat Takahashi M, Iseki E, Kosaka K (2000) Cdk5 and munc-18/p67 co-localization in early stage neurofibrillary tangles-bearing neurons in Alzheimer type dementia brains. J Neurol Sci 172:63–69. doi:10.1016/S0022-510X(99)00291-9 PubMed Takahashi M, Iseki E, Kosaka K (2000) Cdk5 and munc-18/p67 co-localization in early stage neurofibrillary tangles-bearing neurons in Alzheimer type dementia brains. J Neurol Sci 172:63–69. doi:10.​1016/​S0022-510X(99)00291-9 PubMed
305.
Zurück zum Zitat Takahashi RH, Almeida CG, Kearney PF, Yu F, Lin MT, Milner TA, Gouras GK (2004) Oligomerization of Alzheimer’s beta-amyloid within processes and synapses of cultured neurons and brain. J Neurosci 24:3592–3599. doi:10.1523/JNEUROSCI.5167-03.2004 PubMed Takahashi RH, Almeida CG, Kearney PF, Yu F, Lin MT, Milner TA, Gouras GK (2004) Oligomerization of Alzheimer’s beta-amyloid within processes and synapses of cultured neurons and brain. J Neurosci 24:3592–3599. doi:10.​1523/​JNEUROSCI.​5167-03.​2004 PubMed
306.
Zurück zum Zitat Takahashi RH, Milner TA, Li F, Nam EE, Edgar MA, Yamaguchi H, Beal MF, Xu H, Greengard P, Gouras GK (2002) Intraneuronal Alzheimer abeta42 accumulates in multivesicular bodies and is associated with synaptic pathology. Am J Pathol 161:1869–1879PubMed Takahashi RH, Milner TA, Li F, Nam EE, Edgar MA, Yamaguchi H, Beal MF, Xu H, Greengard P, Gouras GK (2002) Intraneuronal Alzheimer abeta42 accumulates in multivesicular bodies and is associated with synaptic pathology. Am J Pathol 161:1869–1879PubMed
307.
308.
Zurück zum Zitat ter Laak HJ, Renkawek K, van Workum FP (1994) The olfactory bulb in Alzheimer disease: a morphologic study of neuron loss, tangles, and senile plaques in relation to olfaction. Alzheimer Dis Assoc Disord 8:38–48. doi:10.1097/00002093-199408010-00007 PubMed ter Laak HJ, Renkawek K, van Workum FP (1994) The olfactory bulb in Alzheimer disease: a morphologic study of neuron loss, tangles, and senile plaques in relation to olfaction. Alzheimer Dis Assoc Disord 8:38–48. doi:10.​1097/​00002093-199408010-00007 PubMed
309.
Zurück zum Zitat Terry RD, Gonatas JK, Weiss M (1964) Ultrastructural studies in Alzheimer presenile dementia. Am J Pathol 44:269–297PubMed Terry RD, Gonatas JK, Weiss M (1964) Ultrastructural studies in Alzheimer presenile dementia. Am J Pathol 44:269–297PubMed
310.
Zurück zum Zitat Terry RD, Masliah E, Salmon DP, Butters N, DeTeresa R, Hill R, Hansen LA, Katzman R (1991) Physical basis of cognitive alterations in Alzheimer’s disease: synapse loss is the major correlate of cognitive impairment. Ann Neurol 30:572–580. doi:10.1002/ana.410300410 PubMed Terry RD, Masliah E, Salmon DP, Butters N, DeTeresa R, Hill R, Hansen LA, Katzman R (1991) Physical basis of cognitive alterations in Alzheimer’s disease: synapse loss is the major correlate of cognitive impairment. Ann Neurol 30:572–580. doi:10.​1002/​ana.​410300410 PubMed
312.
Zurück zum Zitat Thal DR, Capetillo-Zarate E, Schultz C, Rub U, Saido TC, Yamaguchi H, Haass C, Griffin WS, Del Tredici K, Braak H, Ghebremedhin E (2005) Apolipoprotein E co-localizes with newly formed amyloid beta-protein (Abeta) deposits lacking immunoreactivity against N-terminal epitopes of Abeta in a genotype-dependent manner. Acta Neuropathol 110:459–471. doi:10.1007/s00401-005-1053-1 PubMed Thal DR, Capetillo-Zarate E, Schultz C, Rub U, Saido TC, Yamaguchi H, Haass C, Griffin WS, Del Tredici K, Braak H, Ghebremedhin E (2005) Apolipoprotein E co-localizes with newly formed amyloid beta-protein (Abeta) deposits lacking immunoreactivity against N-terminal epitopes of Abeta in a genotype-dependent manner. Acta Neuropathol 110:459–471. doi:10.​1007/​s00401-005-1053-1 PubMed
313.
Zurück zum Zitat Thal DR, Ghebremedhin E, Orantes M, Wiestler OD (2003) Vascular pathology in Alzheimer disease: correlation of cerebral amyloid angiopathy and arteriosclerosis/lipohyalinosis with cognitive decline. J Neuropathol Exp Neurol 62:1287–1301PubMed Thal DR, Ghebremedhin E, Orantes M, Wiestler OD (2003) Vascular pathology in Alzheimer disease: correlation of cerebral amyloid angiopathy and arteriosclerosis/lipohyalinosis with cognitive decline. J Neuropathol Exp Neurol 62:1287–1301PubMed
314.
Zurück zum Zitat Thal DR, Ghebremedhin E, Rüb U, Yamaguchi H, Tredici KD, Braak H (2002) Two types of sporadic cerebral amyloid angiopathy. J Neuropathol Exp Neurol 61:282–293PubMed Thal DR, Ghebremedhin E, Rüb U, Yamaguchi H, Tredici KD, Braak H (2002) Two types of sporadic cerebral amyloid angiopathy. J Neuropathol Exp Neurol 61:282–293PubMed
315.
316.
Zurück zum Zitat Thal DR, Hartig W, Schober R (1998) Stage-correlated distribution of type 1 and 2 dystrophic neurites in cortical and hippocampal plaques in Alzheimer’s disease. J Brain Res 39:175–181 Thal DR, Hartig W, Schober R (1998) Stage-correlated distribution of type 1 and 2 dystrophic neurites in cortical and hippocampal plaques in Alzheimer’s disease. J Brain Res 39:175–181
317.
Zurück zum Zitat Thal DR, Hartig W, Schober R (1999) Diffuse plaques in the molecular layer show intracellular A beta(8-17)-immunoreactive deposits in subpial astrocytes. Clin Neuropathol 18:226–231PubMed Thal DR, Hartig W, Schober R (1999) Diffuse plaques in the molecular layer show intracellular A beta(8-17)-immunoreactive deposits in subpial astrocytes. Clin Neuropathol 18:226–231PubMed
318.
Zurück zum Zitat Thal DR, Rub U, Orantes M, Braak H (2002) Phases of A beta-deposition in the human brain and its relevance for the development of AD. Neurology 58:1791–1800PubMed Thal DR, Rub U, Orantes M, Braak H (2002) Phases of A beta-deposition in the human brain and its relevance for the development of AD. Neurology 58:1791–1800PubMed
319.
Zurück zum Zitat Thal DR, Sassin I, Schultz C, Haass C, Braak E, Braak H (1999) Fleecy amyloid deposits in the internal layers of the human entorhinal cortex are comprised of N-terminal truncated fragments of Abeta. Neuropathol Exp Neurol 58:210–216. doi:10.1097/00005072-199902000-00010 Thal DR, Sassin I, Schultz C, Haass C, Braak E, Braak H (1999) Fleecy amyloid deposits in the internal layers of the human entorhinal cortex are comprised of N-terminal truncated fragments of Abeta. Neuropathol Exp Neurol 58:210–216. doi:10.​1097/​00005072-199902000-00010
320.
Zurück zum Zitat Thal DR, Schultz C, Dehghani F, Yamaguchi H, Braak H, Braak E (2000) Amyloid beta-protein (Abeta)-containing astrocytes are located preferentially near N-terminal-truncated Abeta deposits in the human entorhinal cortex. Acta Neuropathol 100:608–617. doi:10.1007/s004010000242 PubMed Thal DR, Schultz C, Dehghani F, Yamaguchi H, Braak H, Braak E (2000) Amyloid beta-protein (Abeta)-containing astrocytes are located preferentially near N-terminal-truncated Abeta deposits in the human entorhinal cortex. Acta Neuropathol 100:608–617. doi:10.​1007/​s004010000242 PubMed
321.
Zurück zum Zitat Tiraboschi P, Sabbagh MN, Hansen LA, Salmon DP, Merdes A, Gamst A, Masliah E, Alford M, Thal LJ, Corey-Bloom J (2004) Alzheimer disease without neocortical neurofibrillary tangles: “a second look. Neurology 62:1141–1147PubMed Tiraboschi P, Sabbagh MN, Hansen LA, Salmon DP, Merdes A, Gamst A, Masliah E, Alford M, Thal LJ, Corey-Bloom J (2004) Alzheimer disease without neocortical neurofibrillary tangles: “a second look. Neurology 62:1141–1147PubMed
322.
Zurück zum Zitat Torp R, Head E, Cotman CW (2000) Ultrastructural analyses of beta-amyloid in the aged dog brain: neuronal beta-amyloid is localized to the plasma membrane. Prog Neuropsychopharmacol Biol Psychiatry 24:801–810. doi:10.1016/S0278-5846(00)00107-X PubMed Torp R, Head E, Cotman CW (2000) Ultrastructural analyses of beta-amyloid in the aged dog brain: neuronal beta-amyloid is localized to the plasma membrane. Prog Neuropsychopharmacol Biol Psychiatry 24:801–810. doi:10.​1016/​S0278-5846(00)00107-X PubMed
323.
Zurück zum Zitat Tsuboi Y, Wszolek ZK, Graff-Radford NR, Cookson N, Dickson DW (2003) Tau pathology in the olfactory bulb correlates with Braak stage, Lewy body pathology and apolipoprotein epsilon4. Neuropathol Appl Neurobiol 29:503–510. doi:10.1046/j.1365-2990.2003.00453.x PubMed Tsuboi Y, Wszolek ZK, Graff-Radford NR, Cookson N, Dickson DW (2003) Tau pathology in the olfactory bulb correlates with Braak stage, Lewy body pathology and apolipoprotein epsilon4. Neuropathol Appl Neurobiol 29:503–510. doi:10.​1046/​j.​1365-2990.​2003.​00453.​x PubMed
324.
Zurück zum Zitat Uchihara T, Duyckaerts C, He Y, Kobayashi K, Seilhean D, Amouyel P, Hauw JJ (1995) ApoE immunoreactivity and microglial cells in Alzheimer’s disease brain. Neurosci Lett 195:5–8. doi:10.1016/0304-3940(95)11763-M PubMed Uchihara T, Duyckaerts C, He Y, Kobayashi K, Seilhean D, Amouyel P, Hauw JJ (1995) ApoE immunoreactivity and microglial cells in Alzheimer’s disease brain. Neurosci Lett 195:5–8. doi:10.​1016/​0304-3940(95)11763-M PubMed
325.
Zurück zum Zitat Uchihara T, Duyckaerts C, Lazarini F, Mokhtari K, Seilhean D, Amouyel P, Hauw J-J (1996) Inconstant apolipoprotein E (ApoE)-like immunoreactivity in amyloid beta protein deposits: relationship with APOE genotype in aging brain and Alzheimer’s disease. Acta Neuropathol 92:180–185. doi:10.1007/s004010050506 PubMed Uchihara T, Duyckaerts C, Lazarini F, Mokhtari K, Seilhean D, Amouyel P, Hauw J-J (1996) Inconstant apolipoprotein E (ApoE)-like immunoreactivity in amyloid beta protein deposits: relationship with APOE genotype in aging brain and Alzheimer’s disease. Acta Neuropathol 92:180–185. doi:10.​1007/​s004010050506 PubMed
326.
Zurück zum Zitat Uchihara T, Kondo H, Kosaka K, Tsukagoshi H (1992) Selective loss of nigral neurons in Alzheimer’s disease: a morphometric study. Acta Neuropathol 83:271–276. doi:10.1007/BF00296789 PubMed Uchihara T, Kondo H, Kosaka K, Tsukagoshi H (1992) Selective loss of nigral neurons in Alzheimer’s disease: a morphometric study. Acta Neuropathol 83:271–276. doi:10.​1007/​BF00296789 PubMed
327.
Zurück zum Zitat Uchihara T, Nakamura A, Yamazaki M, Mori O (2001) Evolution from pretangle neurons to neurofibrillary tangles monitored by thiazin red combined with Gallyas method and double immunofluorescence. Acta Neuropathol 101:535–539PubMed Uchihara T, Nakamura A, Yamazaki M, Mori O (2001) Evolution from pretangle neurons to neurofibrillary tangles monitored by thiazin red combined with Gallyas method and double immunofluorescence. Acta Neuropathol 101:535–539PubMed
328.
Zurück zum Zitat Uchihara T, Nakamura A, Yamazaki M, Mori O, Ikeda K, Tsuchiya K (2001) Different conformation of neuronal tau deposits distinguished by double immunofluorescence with AT8 and thiazin red combined with Gallyas method. Acta Neuropathol 102:462–466PubMed Uchihara T, Nakamura A, Yamazaki M, Mori O, Ikeda K, Tsuchiya K (2001) Different conformation of neuronal tau deposits distinguished by double immunofluorescence with AT8 and thiazin red combined with Gallyas method. Acta Neuropathol 102:462–466PubMed
330.
Zurück zum Zitat van de Nes JA, Konermann S, Nafe R, Swaab DF (2006) Beta-protein/A4 deposits are not associated with hyperphosphorylated tau in somatostatin neurons in the hypothalamus of Alzheimer’s disease patients. Acta Neuropathol 111:126–138. doi:10.1007/s00401-005-0018-8 PubMed van de Nes JA, Konermann S, Nafe R, Swaab DF (2006) Beta-protein/A4 deposits are not associated with hyperphosphorylated tau in somatostatin neurons in the hypothalamus of Alzheimer’s disease patients. Acta Neuropathol 111:126–138. doi:10.​1007/​s00401-005-0018-8 PubMed
331.
Zurück zum Zitat Veerhuis R, Van Breemen MJ, Hoozemans JM, Morbin M, Ouladhadj J, Tagliavini F, Eikelenboom P (2003) Amyloid beta plaque-associated proteins C1q and SAP enhance the Abeta1-42 peptide-induced cytokine secretion by adult human microglia in vitro. Acta Neuropathol 105:135–144PubMed Veerhuis R, Van Breemen MJ, Hoozemans JM, Morbin M, Ouladhadj J, Tagliavini F, Eikelenboom P (2003) Amyloid beta plaque-associated proteins C1q and SAP enhance the Abeta1-42 peptide-induced cytokine secretion by adult human microglia in vitro. Acta Neuropathol 105:135–144PubMed
332.
Zurück zum Zitat Verbeek MM, Otte-Höller I, Westphal JR, Wesseling P, Ruiter DJ, de Waal RMW (1994) Accumulation of intercellular adhesion molecule-1 in senile plaques in brain tissue of patients with Alzheimer’s disease. Am J Pathol 144:104–116PubMed Verbeek MM, Otte-Höller I, Westphal JR, Wesseling P, Ruiter DJ, de Waal RMW (1994) Accumulation of intercellular adhesion molecule-1 in senile plaques in brain tissue of patients with Alzheimer’s disease. Am J Pathol 144:104–116PubMed
334.
Zurück zum Zitat Vogels OJ, Broere CA, ter Laak HJ, ten Donkelaar HJ, Nieuwenhuys R, Schulte BP (1990) Cell loss and shrinkage in the nucleus basalis Meynert complex in Alzheimer’s disease. Neurobiol Aging 11:3–13. doi:10.1016/0197-4580(90)90056-6 PubMed Vogels OJ, Broere CA, ter Laak HJ, ten Donkelaar HJ, Nieuwenhuys R, Schulte BP (1990) Cell loss and shrinkage in the nucleus basalis Meynert complex in Alzheimer’s disease. Neurobiol Aging 11:3–13. doi:10.​1016/​0197-4580(90)90056-6 PubMed
335.
Zurück zum Zitat Vonsattel JP, Myers RH, Hedley-White ET, Ropper AH, Bird ED, Richardson EP Jr (1991) Cerebral amyloid angiopathy without and with cerebral hemorrhage: a comparative histologic study. Ann Neurol 30:637–649. doi:10.1002/ana.410300503 PubMed Vonsattel JP, Myers RH, Hedley-White ET, Ropper AH, Bird ED, Richardson EP Jr (1991) Cerebral amyloid angiopathy without and with cerebral hemorrhage: a comparative histologic study. Ann Neurol 30:637–649. doi:10.​1002/​ana.​410300503 PubMed
336.
Zurück zum Zitat Walsh DM, Klyubin I, Fadeeva JV, Cullen WK, Anwyl R, Wolfe MS, Rowan MJ, Selkoe DJ (2002) Naturally secreted oligomers of amyloid beta protein potently inhibit hippocampal long-term potentiation in vivo. Nature 416:535–539. doi:10.1038/416535a PubMed Walsh DM, Klyubin I, Fadeeva JV, Cullen WK, Anwyl R, Wolfe MS, Rowan MJ, Selkoe DJ (2002) Naturally secreted oligomers of amyloid beta protein potently inhibit hippocampal long-term potentiation in vivo. Nature 416:535–539. doi:10.​1038/​416535a PubMed
337.
338.
Zurück zum Zitat Wang JZ, Grundke-Iqbal I, Iqbal K (2007) Kinases and phosphatases and tau sites involved in Alzheimer neurofibrillary degeneration. Eur J Neurosci 25:59–68PubMed Wang JZ, Grundke-Iqbal I, Iqbal K (2007) Kinases and phosphatases and tau sites involved in Alzheimer neurofibrillary degeneration. Eur J Neurosci 25:59–68PubMed
339.
Zurück zum Zitat Wegiel J, Kuchna I, Nowicki K, Frackowiak J, Mazur-Kolecka B, Imaki H, Mehta PD, Silverman WP, Reisberg B, Deleon M, Wisniewski T, Pirttilla T, Frey H, Lehtimaki T, Kivimaki T, Visser FE, Kamphorst W, Potempska A, Bolton D, Currie JR, Miller DL (2007) Intraneuronal Abeta immunoreactivity is not a predictor of brain amyloidosis-beta or neurofibrillary degeneration. Acta Neuropathol 113:389–402. doi:10.1007/s00401-006-0191-4 PubMed Wegiel J, Kuchna I, Nowicki K, Frackowiak J, Mazur-Kolecka B, Imaki H, Mehta PD, Silverman WP, Reisberg B, Deleon M, Wisniewski T, Pirttilla T, Frey H, Lehtimaki T, Kivimaki T, Visser FE, Kamphorst W, Potempska A, Bolton D, Currie JR, Miller DL (2007) Intraneuronal Abeta immunoreactivity is not a predictor of brain amyloidosis-beta or neurofibrillary degeneration. Acta Neuropathol 113:389–402. doi:10.​1007/​s00401-006-0191-4 PubMed
340.
Zurück zum Zitat Wegiel J, Wang KC, Imaki H, Rubenstein R, Wronska A, Osuchowski M, Lipinski WJ, Walker LC, LeVine H (2001) The role of microglial cells and astrocytes in fibrillar plaque evolution in transgenic APP(SW) mice. Neurobiol Aging 22:49–61. doi:10.1016/S0197-4580(00)00181-0 PubMed Wegiel J, Wang KC, Imaki H, Rubenstein R, Wronska A, Osuchowski M, Lipinski WJ, Walker LC, LeVine H (2001) The role of microglial cells and astrocytes in fibrillar plaque evolution in transgenic APP(SW) mice. Neurobiol Aging 22:49–61. doi:10.​1016/​S0197-4580(00)00181-0 PubMed
341.
Zurück zum Zitat Weis S, Jellinger K, Wenger E (1991) Morphometry of the corpus callosum in normal aging and Alzheimer’s disease. J Neural Transm Suppl 33:35–38PubMed Weis S, Jellinger K, Wenger E (1991) Morphometry of the corpus callosum in normal aging and Alzheimer’s disease. J Neural Transm Suppl 33:35–38PubMed
342.
343.
Zurück zum Zitat Wen GY, Wisniewski HM, Blondal H, Benedikz E, Frey H, Pirttila T, Rudelli R, Kim KS (1994) Presence of non-fibrillar amyloid beta protein in skin biopsies of Alzheimer’s disease (AD), Down’s syndrome and non-AD normal persons. Acta Neuropathol 88:201–206PubMed Wen GY, Wisniewski HM, Blondal H, Benedikz E, Frey H, Pirttila T, Rudelli R, Kim KS (1994) Presence of non-fibrillar amyloid beta protein in skin biopsies of Alzheimer’s disease (AD), Down’s syndrome and non-AD normal persons. Acta Neuropathol 88:201–206PubMed
345.
Zurück zum Zitat Whitwell JL, Josephs KA, Murray ME, Kantarci K, Przybelski SA, Weigand SD, Vemuri P, Senjem ML, Parisi JE, Knopman DS, Boeve BF, Petersen RC, Dickson DW, Jack CR Jr (2008) MRI correlates of neurofibrillary tangle pathology at autopsy: a voxel-based morphometry study. Neurology 71:743–749. doi:10.1212/01.wnl.0000324924.91351.7d PubMed Whitwell JL, Josephs KA, Murray ME, Kantarci K, Przybelski SA, Weigand SD, Vemuri P, Senjem ML, Parisi JE, Knopman DS, Boeve BF, Petersen RC, Dickson DW, Jack CR Jr (2008) MRI correlates of neurofibrillary tangle pathology at autopsy: a voxel-based morphometry study. Neurology 71:743–749. doi:10.​1212/​01.​wnl.​0000324924.​91351.​7d PubMed
346.
Zurück zum Zitat Wirths O, Multhaup G, Czech C, Blanchard V, Moussaoui S, Tremp G, Pradier L, Beyreuther K, Bayer TA (2001) Intraneuronal Abeta accumulation precedes plaque formation in beta- amyloid precursor protein and presenilin-1 double-transgenic mice. Neurosci Lett 306:116–120. doi:10.1016/S0304-3940(01)01876-6 PubMed Wirths O, Multhaup G, Czech C, Blanchard V, Moussaoui S, Tremp G, Pradier L, Beyreuther K, Bayer TA (2001) Intraneuronal Abeta accumulation precedes plaque formation in beta- amyloid precursor protein and presenilin-1 double-transgenic mice. Neurosci Lett 306:116–120. doi:10.​1016/​S0304-3940(01)01876-6 PubMed
347.
Zurück zum Zitat Wisniewski HM, Sadowski M, Jakubowska-Sadowska K, Tarnawski M, Wegiel J (1998) Diffuse, lake-like amyloid-beta deposits in the parvopyramidal layer of the presubiculum in Alzheimer disease. J Neuropathol Exp Neurol 57:674–683. doi:10.1097/00005072-199807000-00004 PubMed Wisniewski HM, Sadowski M, Jakubowska-Sadowska K, Tarnawski M, Wegiel J (1998) Diffuse, lake-like amyloid-beta deposits in the parvopyramidal layer of the presubiculum in Alzheimer disease. J Neuropathol Exp Neurol 57:674–683. doi:10.​1097/​00005072-199807000-00004 PubMed
348.
Zurück zum Zitat Wisniewski K, Jervis GA, Moretz RC, Wisniewski HM (1979) Alzheimer neurofibrillary tangles in diseases other than senile and presenile dementia. Ann Neurol 5:288–294. doi:10.1002/ana.410050311 PubMed Wisniewski K, Jervis GA, Moretz RC, Wisniewski HM (1979) Alzheimer neurofibrillary tangles in diseases other than senile and presenile dementia. Ann Neurol 5:288–294. doi:10.​1002/​ana.​410050311 PubMed
349.
Zurück zum Zitat WorkingGroup (1997) Consensus recommendations for the postmortem diagnosis of Alzheimer’s disease. The National Institute on Aging, and Reagan Institute Working Group on Diagnostic Criteria for the Neuropathological Assessment of Alzheimer’s Disease. Neurobiol Aging 18(4 Suppl):S1–S2. doi:10.1016/S0197-4580(97)00057-2 WorkingGroup (1997) Consensus recommendations for the postmortem diagnosis of Alzheimer’s disease. The National Institute on Aging, and Reagan Institute Working Group on Diagnostic Criteria for the Neuropathological Assessment of Alzheimer’s Disease. Neurobiol Aging 18(4 Suppl):S1–S2. doi:10.​1016/​S0197-4580(97)00057-2
351.
Zurück zum Zitat Zekry D, Duyckaerts C, Belmin J, Geoffre C, Herrmann F, Moulias R, Hauw J-J (2003) The vascular lesions in vascular and mixed dementia: the weight of functional neuroanatomy. Neurobiol Aging 24:213–219. doi:10.1016/S0197-4580(02)00066-0 PubMed Zekry D, Duyckaerts C, Belmin J, Geoffre C, Herrmann F, Moulias R, Hauw J-J (2003) The vascular lesions in vascular and mixed dementia: the weight of functional neuroanatomy. Neurobiol Aging 24:213–219. doi:10.​1016/​S0197-4580(02)00066-0 PubMed
352.
Zurück zum Zitat Zekry D, Duyckaerts C, Moulias R, Belmin J, Geoffre C, Herrmann F, Hauw J-J (2002) Degenerative and vascular lesions of the brain have synergistic effects in dementia of the elderly. Acta Neuropathol 103:481–487. doi:10.1007/s00401-001-0493-5 PubMed Zekry D, Duyckaerts C, Moulias R, Belmin J, Geoffre C, Herrmann F, Hauw J-J (2002) Degenerative and vascular lesions of the brain have synergistic effects in dementia of the elderly. Acta Neuropathol 103:481–487. doi:10.​1007/​s00401-001-0493-5 PubMed
353.
Zurück zum Zitat Zhao M, Su J, Head E, Cotman CW (2003) Accumulation of caspase cleaved amyloid precursor protein represents an early neurodegenerative event in aging and in Alzheimer’s disease. Neurobiol Dis 14:391–403. doi:10.1016/j.nbd.2003.07.006 PubMed Zhao M, Su J, Head E, Cotman CW (2003) Accumulation of caspase cleaved amyloid precursor protein represents an early neurodegenerative event in aging and in Alzheimer’s disease. Neurobiol Dis 14:391–403. doi:10.​1016/​j.​nbd.​2003.​07.​006 PubMed
Metadaten
Titel
Classification and basic pathology of Alzheimer disease
verfasst von
Charles Duyckaerts
Benoît Delatour
Marie-Claude Potier
Publikationsdatum
01.07.2009
Verlag
Springer-Verlag
Erschienen in
Acta Neuropathologica / Ausgabe 1/2009
Print ISSN: 0001-6322
Elektronische ISSN: 1432-0533
DOI
https://doi.org/10.1007/s00401-009-0532-1

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