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Erschienen in: Clinical Reviews in Allergy & Immunology 2/2013

01.10.2013

Immunoglobulin-Mediated Neuro-Cognitive Impairment: New Data and a Comprehensive Review

verfasst von: Assaf Menachem, Joab Chapman, Yael Deri, Chaim G. Pick, Aviva Katzav

Erschienen in: Clinical Reviews in Allergy & Immunology | Ausgabe 2/2013

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Abstract

Excessive influx of immunoglobulin (IgG) into the brain has been reported to induce central nervous system (CNS) dysfunction. Depressed patients may exhibit immune activation manifested by elevated inflammatory markers and pro-inflammatory cytokines. The brain and especially the limbic system contain high concentrations of high affinity Fc receptors. We reviewed the literature on this phenomena and present data on the behavioral effects of pooled normal IgG on the brain. Many disease states are associated with depression and we examined whether this may be linked to high IgG influx. Female Balb/C mice were injected intra-cerbroventricularly with human immunoglobulin whole molecule, or human IgG F(ab′)2 or Fc fragments. Control mice were injected with saline. The four groups were subjected to behavioral (staircase, forced swimming test, and elevated plus maze) and cognitive tests (passive avoidance test). IgG-injected mice exhibited depression-like behavior as reflected by significantly higher immobility time in the forced swimming test (p < 0.05) and hyperactive behavior as reflected by higher number of stairs climbed in the staircase test compared to controls (p < 0.01). Fc-fragments-injected mice showed hyperactive behavior as reflected by both higher number of stairs climbed and rearing events in the staircase test compared to controls. The results indicate that high levels of normal IgG in the cerebrospinal fluid can cause hyperactivity and depression-like behavior. The mechanism involved in these CNS manifestations include possibly Fc receptor binding.
Literatur
1.
Zurück zum Zitat Bien CG, Vincent A, Barnett MH et al (2012) Immunopathology of autoantibody-associated encephalitides: clues for pathogenesis. Brain 135:1622–1638PubMedCrossRef Bien CG, Vincent A, Barnett MH et al (2012) Immunopathology of autoantibody-associated encephalitides: clues for pathogenesis. Brain 135:1622–1638PubMedCrossRef
2.
Zurück zum Zitat Kaida K, Kusunoki S (2010) Antibodies to gangliosides and ganglioside complexes in Guillain-Barre syndrome and Fisher syndrome: mini-review. J Neuroimmunol 223:5–12PubMedCrossRef Kaida K, Kusunoki S (2010) Antibodies to gangliosides and ganglioside complexes in Guillain-Barre syndrome and Fisher syndrome: mini-review. J Neuroimmunol 223:5–12PubMedCrossRef
3.
Zurück zum Zitat Zandman-Goddard G, Chapman J, Shoenfeld Y (2007) Autoantibodies involved in neuropsychiatric SLE and antiphospholipid syndrome. Semin Arthritis Rheum 36:297–315PubMedCrossRef Zandman-Goddard G, Chapman J, Shoenfeld Y (2007) Autoantibodies involved in neuropsychiatric SLE and antiphospholipid syndrome. Semin Arthritis Rheum 36:297–315PubMedCrossRef
4.
Zurück zum Zitat Peeters M, Joossens S, Vermeire S, Vlietinck R, Bossuyt X, Rutgeerts P (2001) Diagnostic value of anti-Saccharomyces cerevisiae and antineutrophil cytoplasmic autoantibodies in inflammatory bowel disease. Am J Gastroenterol 96:730–734PubMedCrossRef Peeters M, Joossens S, Vermeire S, Vlietinck R, Bossuyt X, Rutgeerts P (2001) Diagnostic value of anti-Saccharomyces cerevisiae and antineutrophil cytoplasmic autoantibodies in inflammatory bowel disease. Am J Gastroenterol 96:730–734PubMedCrossRef
5.
Zurück zum Zitat Luborsky JL, Barua A, Shatavi SV, Kebede T, Abramowicz J, Rotmensch J (2005) Anti-tumor antibodies in ovarian cancer. Am J Reprod Immunol 54:55–62PubMedCrossRef Luborsky JL, Barua A, Shatavi SV, Kebede T, Abramowicz J, Rotmensch J (2005) Anti-tumor antibodies in ovarian cancer. Am J Reprod Immunol 54:55–62PubMedCrossRef
6.
Zurück zum Zitat Zhong L, Peng X, Hidalgo GE, Doherty DE, Stromberg AJ, Hirschowitz EA (2004) Identification of circulating antibodies to tumor-associated proteins for combined use as markers of non-small cell lung cancer. Proteomics 4:1216–1225PubMedCrossRef Zhong L, Peng X, Hidalgo GE, Doherty DE, Stromberg AJ, Hirschowitz EA (2004) Identification of circulating antibodies to tumor-associated proteins for combined use as markers of non-small cell lung cancer. Proteomics 4:1216–1225PubMedCrossRef
7.
Zurück zum Zitat Melendez AJ, Bruetschy L, Floto RA, Harnett MM, Allen JM (2001) Functional coupling of FcgammaRI to nicotinamide adenine dinucleotide phosphate (reduced form) oxidative burst and immune complex trafficking requires the activation of phospholipase D1. Blood 98:3421–3428PubMedCrossRef Melendez AJ, Bruetschy L, Floto RA, Harnett MM, Allen JM (2001) Functional coupling of FcgammaRI to nicotinamide adenine dinucleotide phosphate (reduced form) oxidative burst and immune complex trafficking requires the activation of phospholipase D1. Blood 98:3421–3428PubMedCrossRef
8.
Zurück zum Zitat Stangel M, Compston A (2001) Polyclonal immunoglobulins (IVIg) modulate nitric oxide production and microglial functions in vitro via Fc receptors. J Neuroimmunol 112:63–71PubMedCrossRef Stangel M, Compston A (2001) Polyclonal immunoglobulins (IVIg) modulate nitric oxide production and microglial functions in vitro via Fc receptors. J Neuroimmunol 112:63–71PubMedCrossRef
9.
Zurück zum Zitat Sanchez-Mejorada G, Rosales C (1998) Signal transduction by immunoglobulin Fc receptors. J Leukoc Biol 63:521–533PubMed Sanchez-Mejorada G, Rosales C (1998) Signal transduction by immunoglobulin Fc receptors. J Leukoc Biol 63:521–533PubMed
11.
Zurück zum Zitat van de Winkel JG, Capel PJ (1993) Human IgG Fc receptor heterogeneity: molecular aspects and clinical implications. Immunol Today 14:215–221PubMedCrossRef van de Winkel JG, Capel PJ (1993) Human IgG Fc receptor heterogeneity: molecular aspects and clinical implications. Immunol Today 14:215–221PubMedCrossRef
12.
Zurück zum Zitat Nakamura K, Hirai H, Torashima T et al (2007) CD3 and immunoglobulin G Fc receptor regulate cerebellar functions. Mol Cell Biol 27:5128–5134PubMedCrossRef Nakamura K, Hirai H, Torashima T et al (2007) CD3 and immunoglobulin G Fc receptor regulate cerebellar functions. Mol Cell Biol 27:5128–5134PubMedCrossRef
13.
Zurück zum Zitat Suemitsu S, Watanabe M, Yokobayashi E et al (2010) Fcgamma receptors contribute to pyramidal cell death in the mouse hippocampus following local kainic acid injection. Neuroscience 166:819–831PubMedCrossRef Suemitsu S, Watanabe M, Yokobayashi E et al (2010) Fcgamma receptors contribute to pyramidal cell death in the mouse hippocampus following local kainic acid injection. Neuroscience 166:819–831PubMedCrossRef
14.
Zurück zum Zitat Namer IJ, Steibel J, Poulet P, Mauss Y, Mohr M, Chambron J (1994) The role of Mycobacterium tuberculosis in experimental allergic encephalomyelitis. Eur Neurol 34:224–227PubMedCrossRef Namer IJ, Steibel J, Poulet P, Mauss Y, Mohr M, Chambron J (1994) The role of Mycobacterium tuberculosis in experimental allergic encephalomyelitis. Eur Neurol 34:224–227PubMedCrossRef
15.
Zurück zum Zitat Walls AF, Suckling AJ, Rumsby MG (1988) Autoantibody responses in the cerebrospinal fluid of guinea pigs with chronic relapsing experimental allergic encephalomyelitis. Acta Neurol Scand 78:422–428PubMedCrossRef Walls AF, Suckling AJ, Rumsby MG (1988) Autoantibody responses in the cerebrospinal fluid of guinea pigs with chronic relapsing experimental allergic encephalomyelitis. Acta Neurol Scand 78:422–428PubMedCrossRef
16.
Zurück zum Zitat Kamm C, Zettl UK (2012) Autoimmune disorders affecting both the central and peripheral nervous system. Autoimmun Rev 11:196–202PubMedCrossRef Kamm C, Zettl UK (2012) Autoimmune disorders affecting both the central and peripheral nervous system. Autoimmun Rev 11:196–202PubMedCrossRef
17.
Zurück zum Zitat Chavarria A, Alcocer-Varela J (2004) Is damage in central nervous system due to inflammation? Autoimmun Rev 3:251–260PubMedCrossRef Chavarria A, Alcocer-Varela J (2004) Is damage in central nervous system due to inflammation? Autoimmun Rev 3:251–260PubMedCrossRef
18.
Zurück zum Zitat Rabchevsky AG, Degos JD, Dreyfus PA (1999) Peripheral injections of Freund’s adjuvant in mice provoke leakage of serum proteins through the blood–brain barrier without inducing reactive gliosis. Brain Res 832:84–96PubMedCrossRef Rabchevsky AG, Degos JD, Dreyfus PA (1999) Peripheral injections of Freund’s adjuvant in mice provoke leakage of serum proteins through the blood–brain barrier without inducing reactive gliosis. Brain Res 832:84–96PubMedCrossRef
19.
Zurück zum Zitat Shrot S, Katzav A, Korczyn AD et al (2002) Behavioral and cognitive deficits occur only after prolonged exposure of mice to antiphospholipid antibodies. Lupus 11:736–743PubMedCrossRef Shrot S, Katzav A, Korczyn AD et al (2002) Behavioral and cognitive deficits occur only after prolonged exposure of mice to antiphospholipid antibodies. Lupus 11:736–743PubMedCrossRef
20.
Zurück zum Zitat Holmes GP, Kaplan JE, Gantz NM et al (1988) Chronic fatigue syndrome: a working case definition. Ann Intern Med 108:387–389PubMedCrossRef Holmes GP, Kaplan JE, Gantz NM et al (1988) Chronic fatigue syndrome: a working case definition. Ann Intern Med 108:387–389PubMedCrossRef
21.
Zurück zum Zitat Lorusso L, Mikhaylova SV, Capelli E, Ferrari D, Ngonga GK, Ricevuti G (2009) Immunological aspects of chronic fatigue syndrome. Autoimmun Rev 8:287–291PubMedCrossRef Lorusso L, Mikhaylova SV, Capelli E, Ferrari D, Ngonga GK, Ricevuti G (2009) Immunological aspects of chronic fatigue syndrome. Autoimmun Rev 8:287–291PubMedCrossRef
22.
Zurück zum Zitat Hokama Y, Empey-Campora C, Hara C et al (2008) Acute phase phospholipids related to the cardiolipin of mitochondria in the sera of patients with chronic fatigue syndrome (CFS), chronic Ciguatera fish poisoning (CCFP), and other diseases attributed to chemicals, Gulf War, and marine toxins. J Clin Lab Anal 22:99–105PubMedCrossRef Hokama Y, Empey-Campora C, Hara C et al (2008) Acute phase phospholipids related to the cardiolipin of mitochondria in the sera of patients with chronic fatigue syndrome (CFS), chronic Ciguatera fish poisoning (CCFP), and other diseases attributed to chemicals, Gulf War, and marine toxins. J Clin Lab Anal 22:99–105PubMedCrossRef
23.
Zurück zum Zitat Konstantinov K, von Mikecz A, Buchwald D, Jones J, Gerace L, Tan EM (1996) Autoantibodies to nuclear envelope antigens in chronic fatigue syndrome. J Clin Invest 98:1888–1896PubMedCrossRef Konstantinov K, von Mikecz A, Buchwald D, Jones J, Gerace L, Tan EM (1996) Autoantibodies to nuclear envelope antigens in chronic fatigue syndrome. J Clin Invest 98:1888–1896PubMedCrossRef
24.
Zurück zum Zitat Wheatland R (2005) Chronic ACTH autoantibodies are a significant pathological factor in the disruption of the hypothalamic–pituitary–adrenal axis in chronic fatigue syndrome, anorexia nervosa and major depression. Med Hypotheses 65:287–295PubMedCrossRef Wheatland R (2005) Chronic ACTH autoantibodies are a significant pathological factor in the disruption of the hypothalamic–pituitary–adrenal axis in chronic fatigue syndrome, anorexia nervosa and major depression. Med Hypotheses 65:287–295PubMedCrossRef
25.
Zurück zum Zitat Vernon SD, Reeves WC (2005) Evaluation of autoantibodies to common and neuronal cell antigens in Chronic Fatigue Syndrome. J Autoimmune Dis 2:5PubMedCrossRef Vernon SD, Reeves WC (2005) Evaluation of autoantibodies to common and neuronal cell antigens in Chronic Fatigue Syndrome. J Autoimmune Dis 2:5PubMedCrossRef
26.
Zurück zum Zitat Klein R, Berg PA (1995) High incidence of antibodies to 5-hydroxytryptamine, gangliosides and phospholipids in patients with chronic fatigue and fibromyalgia syndrome and their relatives: evidence for a clinical entity of both disorders. Eur J Med Res 1:21–26PubMed Klein R, Berg PA (1995) High incidence of antibodies to 5-hydroxytryptamine, gangliosides and phospholipids in patients with chronic fatigue and fibromyalgia syndrome and their relatives: evidence for a clinical entity of both disorders. Eur J Med Res 1:21–26PubMed
27.
Zurück zum Zitat Heller U, Becker EW, Zenner HP, Berg PA (1998) Incidence and clinical relevance of antibodies to phospholipids, serotonin and ganglioside in patients with sudden deafness and progressive inner ear hearing loss. HNO 46:583–586PubMedCrossRef Heller U, Becker EW, Zenner HP, Berg PA (1998) Incidence and clinical relevance of antibodies to phospholipids, serotonin and ganglioside in patients with sudden deafness and progressive inner ear hearing loss. HNO 46:583–586PubMedCrossRef
29.
Zurück zum Zitat Luque FA, Jaffe SL (2007) Cerebrospinal fluid analysis in multiple sclerosis. Int Rev Neurobiol 79:341–356PubMedCrossRef Luque FA, Jaffe SL (2007) Cerebrospinal fluid analysis in multiple sclerosis. Int Rev Neurobiol 79:341–356PubMedCrossRef
30.
Zurück zum Zitat Chapman J, Abu-Katash M, Inzelberg R et al (2002) Prevalence and clinical features of dementia associated with the antiphospholipid syndrome and circulating anticoagulants. J Neurol Sci 203–204:81–84PubMedCrossRef Chapman J, Abu-Katash M, Inzelberg R et al (2002) Prevalence and clinical features of dementia associated with the antiphospholipid syndrome and circulating anticoagulants. J Neurol Sci 203–204:81–84PubMedCrossRef
31.
Zurück zum Zitat Bluestein HG, Williams GW, Steinberg AD (1981) Cerebrospinal fluid antibodies to neuronal cells: association with neuropsychiatric manifestations of systemic lupus erythematosus. Am J Med 70:240–246PubMedCrossRef Bluestein HG, Williams GW, Steinberg AD (1981) Cerebrospinal fluid antibodies to neuronal cells: association with neuropsychiatric manifestations of systemic lupus erythematosus. Am J Med 70:240–246PubMedCrossRef
32.
Zurück zum Zitat Danon YL, Garty BZ (1986) Autoantibodies to neuroblastoma cell surface antigens in neuropsychiatric lupus. Neuropediatrics 17:23–27PubMedCrossRef Danon YL, Garty BZ (1986) Autoantibodies to neuroblastoma cell surface antigens in neuropsychiatric lupus. Neuropediatrics 17:23–27PubMedCrossRef
33.
Zurück zum Zitat Katzav A, Shoenfeld Y, Chapman J (2010) The pathogenesis of neural injury in animal models of the antiphospholipid syndrome. Clin Rev Allergy Immunol 38:196–200PubMedCrossRef Katzav A, Shoenfeld Y, Chapman J (2010) The pathogenesis of neural injury in animal models of the antiphospholipid syndrome. Clin Rev Allergy Immunol 38:196–200PubMedCrossRef
34.
Zurück zum Zitat Liberato B, Levy RA (2007) Antiphospholipid syndrome and cognition. Clin Rev Allergy Immunol 32:188–191PubMedCrossRef Liberato B, Levy RA (2007) Antiphospholipid syndrome and cognition. Clin Rev Allergy Immunol 32:188–191PubMedCrossRef
35.
Zurück zum Zitat Katzav A, Pick CG, Korczyn AD et al (2001) Hyperactivity in a mouse model of the antiphospholipid syndrome. Lupus 10:496–499PubMedCrossRef Katzav A, Pick CG, Korczyn AD et al (2001) Hyperactivity in a mouse model of the antiphospholipid syndrome. Lupus 10:496–499PubMedCrossRef
36.
Zurück zum Zitat Omdal R, Brokstad K, Waterloo K, Koldingsnes W, Jonsson R, Mellgren SI (2005) Neuropsychiatric disturbances in SLE are associated with antibodies against NMDA receptors. Eur J Neurol 12:392–398PubMedCrossRef Omdal R, Brokstad K, Waterloo K, Koldingsnes W, Jonsson R, Mellgren SI (2005) Neuropsychiatric disturbances in SLE are associated with antibodies against NMDA receptors. Eur J Neurol 12:392–398PubMedCrossRef
37.
Zurück zum Zitat Peery HE, Day GS, Dunn S, et al (2012) Anti-NMDA receptor encephalitis. The disorder, the diagnosis and the immunobiology. Autoimmun Rev 11:863–872 Peery HE, Day GS, Dunn S, et al (2012) Anti-NMDA receptor encephalitis. The disorder, the diagnosis and the immunobiology. Autoimmun Rev 11:863–872
38.
Zurück zum Zitat D’Andrea MR (2005) Add Alzheimer’s disease to the list of autoimmune diseases. Med Hypotheses 64:458–463PubMedCrossRef D’Andrea MR (2005) Add Alzheimer’s disease to the list of autoimmune diseases. Med Hypotheses 64:458–463PubMedCrossRef
39.
Zurück zum Zitat Sardi F, Fassina L, Venturini L et al (2011) Alzheimer’s disease, autoimmunity and inflammation. The good, the bad and the ugly. Autoimmun Rev 11:149–153PubMedCrossRef Sardi F, Fassina L, Venturini L et al (2011) Alzheimer’s disease, autoimmunity and inflammation. The good, the bad and the ugly. Autoimmun Rev 11:149–153PubMedCrossRef
40.
Zurück zum Zitat D’Andrea MR (2005) Evidence that immunoglobulin-positive neurons in Alzheimer’s disease are dying via the classical antibody-dependent complement pathway. Am J Alzheimers Dis Other Demen 20:144–150PubMedCrossRef D’Andrea MR (2005) Evidence that immunoglobulin-positive neurons in Alzheimer’s disease are dying via the classical antibody-dependent complement pathway. Am J Alzheimers Dis Other Demen 20:144–150PubMedCrossRef
41.
Zurück zum Zitat Ryu JK, McLarnon JG (2009) A leaky blood–brain barrier, fibrinogen infiltration and microglial reactivity in inflamed Alzheimer’s disease brain. J Cell Mol Med 13:2911–2925PubMedCrossRef Ryu JK, McLarnon JG (2009) A leaky blood–brain barrier, fibrinogen infiltration and microglial reactivity in inflamed Alzheimer’s disease brain. J Cell Mol Med 13:2911–2925PubMedCrossRef
42.
Zurück zum Zitat Colasanti T, Barbati C, Rosano G, Malorni W, Ortona E (2010) Autoantibodies in patients with Alzheimer’s disease: pathogenetic role and potential use as biomarkers of disease progression. Autoimmun Rev 9:807–811PubMedCrossRef Colasanti T, Barbati C, Rosano G, Malorni W, Ortona E (2010) Autoantibodies in patients with Alzheimer’s disease: pathogenetic role and potential use as biomarkers of disease progression. Autoimmun Rev 9:807–811PubMedCrossRef
43.
Zurück zum Zitat Chapman J, Alroy G, Weiss Z, Faigon M, Feldon J, Michaelson DM (1991) Anti-neuronal antibodies similar to those found in Alzheimer’s disease induce memory dysfunction in rats. Neuroscience 40:297–305PubMedCrossRef Chapman J, Alroy G, Weiss Z, Faigon M, Feldon J, Michaelson DM (1991) Anti-neuronal antibodies similar to those found in Alzheimer’s disease induce memory dysfunction in rats. Neuroscience 40:297–305PubMedCrossRef
44.
Zurück zum Zitat Chapman J, Feldon J, Alroy G, Michaelson DM (1989) Immunization of rats with cholinergic neurons induces behavioral deficits. J Neural Transplant 1:63–76PubMedCrossRef Chapman J, Feldon J, Alroy G, Michaelson DM (1989) Immunization of rats with cholinergic neurons induces behavioral deficits. J Neural Transplant 1:63–76PubMedCrossRef
45.
Zurück zum Zitat Benkler M, Agmon-Levin N, Hassin-Baer S et al (2012) Immunology, autoimmunity, and autoantibodies in Parkinson’s disease. Clin Rev Allergy Immunol 42:164–171PubMedCrossRef Benkler M, Agmon-Levin N, Hassin-Baer S et al (2012) Immunology, autoimmunity, and autoantibodies in Parkinson’s disease. Clin Rev Allergy Immunol 42:164–171PubMedCrossRef
47.
Zurück zum Zitat Hasin DS, Goodwin RD, Stinson FS, Grant BF (2005) Epidemiology of major depressive disorder: results from the National Epidemiologic Survey on Alcoholism and Related Conditions. Arch Gen Psychiatry 62:1097–1106PubMedCrossRef Hasin DS, Goodwin RD, Stinson FS, Grant BF (2005) Epidemiology of major depressive disorder: results from the National Epidemiologic Survey on Alcoholism and Related Conditions. Arch Gen Psychiatry 62:1097–1106PubMedCrossRef
48.
Zurück zum Zitat Dowlati Y, Herrmann N, Swardfager W et al (2010) A meta-analysis of cytokines in major depression. Biol Psychiatry 67:446–457PubMedCrossRef Dowlati Y, Herrmann N, Swardfager W et al (2010) A meta-analysis of cytokines in major depression. Biol Psychiatry 67:446–457PubMedCrossRef
49.
Zurück zum Zitat Gohier B, Goeb JL, Rannou-Dubas K, Fouchard I, Cales P, Garre JB (2003) Hepatitis C, alpha interferon, anxiety and depression disorders: a prospective study of 71 patients. World J Biol Psychiatry 4:115–118PubMedCrossRef Gohier B, Goeb JL, Rannou-Dubas K, Fouchard I, Cales P, Garre JB (2003) Hepatitis C, alpha interferon, anxiety and depression disorders: a prospective study of 71 patients. World J Biol Psychiatry 4:115–118PubMedCrossRef
50.
Zurück zum Zitat Howren MB, Lamkin DM, Suls J (2009) Associations of depression with C-reactive protein, IL-1, and IL-6: a meta-analysis. Psychosom Med 71:171–186PubMedCrossRef Howren MB, Lamkin DM, Suls J (2009) Associations of depression with C-reactive protein, IL-1, and IL-6: a meta-analysis. Psychosom Med 71:171–186PubMedCrossRef
51.
Zurück zum Zitat Kronfol Z (2002) Immune dysregulation in major depression: a critical review of existing evidence. Int J Neuropsychopharmacol 5:333–343PubMedCrossRef Kronfol Z (2002) Immune dysregulation in major depression: a critical review of existing evidence. Int J Neuropsychopharmacol 5:333–343PubMedCrossRef
52.
Zurück zum Zitat Kronfol Z, House JD (1989) Lymphocyte mitogenesis, immunoglobulin and complement levels in depressed patients and normal controls. Acta Psychiatr Scand 80:142–147PubMedCrossRef Kronfol Z, House JD (1989) Lymphocyte mitogenesis, immunoglobulin and complement levels in depressed patients and normal controls. Acta Psychiatr Scand 80:142–147PubMedCrossRef
53.
Zurück zum Zitat Maes M (1995) Evidence for an immune response in major depression: a review and hypothesis. Prog Neuropsychopharmacol Biol Psychiatry 19:11–38PubMedCrossRef Maes M (1995) Evidence for an immune response in major depression: a review and hypothesis. Prog Neuropsychopharmacol Biol Psychiatry 19:11–38PubMedCrossRef
54.
Zurück zum Zitat Maes M, Scharpe S, Meltzer HY et al (1993) Relationships between interleukin-6 activity, acute phase proteins, and function of the hypothalamic–pituitary–adrenal axis in severe depression. Psychiatry Res 49:11–27PubMedCrossRef Maes M, Scharpe S, Meltzer HY et al (1993) Relationships between interleukin-6 activity, acute phase proteins, and function of the hypothalamic–pituitary–adrenal axis in severe depression. Psychiatry Res 49:11–27PubMedCrossRef
55.
Zurück zum Zitat Valentine AD, Meyers CA, Kling MA, Richelson E, Hauser P (1998) Mood and cognitive side effects of interferon-alpha therapy. Semin Oncol 25:39–47PubMed Valentine AD, Meyers CA, Kling MA, Richelson E, Hauser P (1998) Mood and cognitive side effects of interferon-alpha therapy. Semin Oncol 25:39–47PubMed
56.
Zurück zum Zitat Dantzer R, O’Connor JC, Freund GG, Johnson RW, Kelley KW (2008) From inflammation to sickness and depression: when the immune system subjugates the brain. Nat Rev Neurosci 9:46–56PubMedCrossRef Dantzer R, O’Connor JC, Freund GG, Johnson RW, Kelley KW (2008) From inflammation to sickness and depression: when the immune system subjugates the brain. Nat Rev Neurosci 9:46–56PubMedCrossRef
57.
Zurück zum Zitat Kent S, Bluthe RM, Kelley KW, Dantzer R (1992) Sickness behavior as a new target for drug development. Trends Pharmacol Sci 13:24–28PubMedCrossRef Kent S, Bluthe RM, Kelley KW, Dantzer R (1992) Sickness behavior as a new target for drug development. Trends Pharmacol Sci 13:24–28PubMedCrossRef
58.
Zurück zum Zitat Fantuzzi G, Dinarello CA (1996) The inflammatory response in interleukin-1 beta-deficient mice: comparison with other cytokine-related knock-out mice. J Leukoc Biol 59:489–493PubMed Fantuzzi G, Dinarello CA (1996) The inflammatory response in interleukin-1 beta-deficient mice: comparison with other cytokine-related knock-out mice. J Leukoc Biol 59:489–493PubMed
59.
Zurück zum Zitat Krueger JM, Majde JA, Obal F (2003) Sleep in host defense. Brain Behav Immun 17(Suppl 1):S41–S47PubMedCrossRef Krueger JM, Majde JA, Obal F (2003) Sleep in host defense. Brain Behav Immun 17(Suppl 1):S41–S47PubMedCrossRef
60.
Zurück zum Zitat Swiergiel AH, Smagin GN, Johnson LJ, Dunn AJ (1997) The role of cytokines in the behavioral responses to endotoxin and influenza virus infection in mice: effects of acute and chronic administration of the interleukin-1-receptor antagonist (IL-1ra). Brain Res 776:96–104PubMedCrossRef Swiergiel AH, Smagin GN, Johnson LJ, Dunn AJ (1997) The role of cytokines in the behavioral responses to endotoxin and influenza virus infection in mice: effects of acute and chronic administration of the interleukin-1-receptor antagonist (IL-1ra). Brain Res 776:96–104PubMedCrossRef
61.
Zurück zum Zitat Adler G, Gattaz WF (1993) Pain perception threshold in major depression. Biol Psychiatry 34:687–689PubMedCrossRef Adler G, Gattaz WF (1993) Pain perception threshold in major depression. Biol Psychiatry 34:687–689PubMedCrossRef
62.
Zurück zum Zitat Watkins LR, Wiertelak EP, Goehler LE, Smith KP, Martin D, Maier SF (1994) Characterization of cytokine-induced hyperalgesia. Brain Res 654:15–26PubMedCrossRef Watkins LR, Wiertelak EP, Goehler LE, Smith KP, Martin D, Maier SF (1994) Characterization of cytokine-induced hyperalgesia. Brain Res 654:15–26PubMedCrossRef
63.
Zurück zum Zitat Song X, Shapiro S, Goldman DL, Casadevall A, Scharff M, Lee SC (2002) Fcgamma receptor I- and III-mediated macrophage inflammatory protein 1alpha induction in primary human and murine microglia. Infect Immun 70:5177–5184PubMedCrossRef Song X, Shapiro S, Goldman DL, Casadevall A, Scharff M, Lee SC (2002) Fcgamma receptor I- and III-mediated macrophage inflammatory protein 1alpha induction in primary human and murine microglia. Infect Immun 70:5177–5184PubMedCrossRef
64.
Zurück zum Zitat Song X, Tanaka S, Cox D, Lee SC (2004) Fcgamma receptor signaling in primary human microglia: differential roles of PI-3K and Ras/ERK MAPK pathways in phagocytosis and chemokine induction. J Leukoc Biol 75:1147–1155PubMedCrossRef Song X, Tanaka S, Cox D, Lee SC (2004) Fcgamma receptor signaling in primary human microglia: differential roles of PI-3K and Ras/ERK MAPK pathways in phagocytosis and chemokine induction. J Leukoc Biol 75:1147–1155PubMedCrossRef
65.
Zurück zum Zitat Lunnon K, Teeling JL, Tutt AL, Cragg MS, Glennie MJ, Perry VH (2011) Systemic inflammation modulates Fc receptor expression on microglia during chronic neurodegeneration. J Immunol 186:7215–7224PubMedCrossRef Lunnon K, Teeling JL, Tutt AL, Cragg MS, Glennie MJ, Perry VH (2011) Systemic inflammation modulates Fc receptor expression on microglia during chronic neurodegeneration. J Immunol 186:7215–7224PubMedCrossRef
66.
Zurück zum Zitat Hastings RS, Parsey RV, Oquendo MA, Arango V, Mann JJ (2004) Volumetric analysis of the prefrontal cortex, amygdala, and hippocampus in major depression. Neuropsychopharmacol 29:952–959CrossRef Hastings RS, Parsey RV, Oquendo MA, Arango V, Mann JJ (2004) Volumetric analysis of the prefrontal cortex, amygdala, and hippocampus in major depression. Neuropsychopharmacol 29:952–959CrossRef
67.
Zurück zum Zitat Mayberg HS, Lozano AM, Voon V et al (2005) Deep brain stimulation for treatment-resistant depression. Neuron 45:651–660PubMedCrossRef Mayberg HS, Lozano AM, Voon V et al (2005) Deep brain stimulation for treatment-resistant depression. Neuron 45:651–660PubMedCrossRef
68.
Zurück zum Zitat Heo Y, Zhang Y, Gao D, Miller VM, Lawrence DA (2011) Aberrant immune responses in a mouse with behavioral disorders. PLoS One 6:e20912PubMedCrossRef Heo Y, Zhang Y, Gao D, Miller VM, Lawrence DA (2011) Aberrant immune responses in a mouse with behavioral disorders. PLoS One 6:e20912PubMedCrossRef
69.
Zurück zum Zitat Katzav A, Solodeev I, Brodsky O et al (2007) Induction of autoimmune depression in mice by anti-ribosomal P antibodies via the limbic system. Arthritis Rheum 56:938–948PubMedCrossRef Katzav A, Solodeev I, Brodsky O et al (2007) Induction of autoimmune depression in mice by anti-ribosomal P antibodies via the limbic system. Arthritis Rheum 56:938–948PubMedCrossRef
70.
Zurück zum Zitat Kivity S, Katz U, Daniel N, Nussinovitch U, Papageorgiou N, Shoenfeld Y (2010) Evidence for the use of intravenous immunoglobulins—a review of the literature. Clin Rev Allergy Immunol 38:201–269PubMedCrossRef Kivity S, Katz U, Daniel N, Nussinovitch U, Papageorgiou N, Shoenfeld Y (2010) Evidence for the use of intravenous immunoglobulins—a review of the literature. Clin Rev Allergy Immunol 38:201–269PubMedCrossRef
71.
Zurück zum Zitat Sapir T, Shoenfeld Y (2005) Facing the enigma of immunomodulatory effects of intravenous immunoglobulin. Clin Rev Allergy Immunol 29:185–199PubMedCrossRef Sapir T, Shoenfeld Y (2005) Facing the enigma of immunomodulatory effects of intravenous immunoglobulin. Clin Rev Allergy Immunol 29:185–199PubMedCrossRef
72.
Zurück zum Zitat Kaveri SV (2012) Intravenous immunoglobulin: exploiting the potential of natural antibodies. Autoimmun Rev 11:792–794PubMedCrossRef Kaveri SV (2012) Intravenous immunoglobulin: exploiting the potential of natural antibodies. Autoimmun Rev 11:792–794PubMedCrossRef
Metadaten
Titel
Immunoglobulin-Mediated Neuro-Cognitive Impairment: New Data and a Comprehensive Review
verfasst von
Assaf Menachem
Joab Chapman
Yael Deri
Chaim G. Pick
Aviva Katzav
Publikationsdatum
01.10.2013
Verlag
Springer US
Erschienen in
Clinical Reviews in Allergy & Immunology / Ausgabe 2/2013
Print ISSN: 1080-0549
Elektronische ISSN: 1559-0267
DOI
https://doi.org/10.1007/s12016-013-8357-z

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