Skip to main content
Erschienen in: Brain Structure and Function 4/2014

01.07.2014 | Original Article

Central stress-integrative circuits: forebrain glutamatergic and GABAergic projections to the dorsomedial hypothalamus, medial preoptic area, and bed nucleus of the stria terminalis

verfasst von: Brent Myers, C. Mark Dolgas, John Kasckow, William E. Cullinan, James P. Herman

Erschienen in: Brain Structure and Function | Ausgabe 4/2014

Einloggen, um Zugang zu erhalten

Abstract

Central regulation of hypothalamo-pituitary-adrenocortical (HPA) axis stress responses is mediated by a relatively circumscribed group of projections to the paraventricular hypothalamus (PVN). The dorsomedial hypothalamus (DMH), medial preoptic area (mPOA), and bed nucleus of the stria terminalis (BST) provide direct, predominantly inhibitory, innervation of the PVN. These PVN-projecting neurons are controlled by descending information from limbic forebrain structures, including the prefrontal cortex, amygdala, hippocampus, and septum. The neurochemical phenotype of limbic circuits targeting PVN relays has not been systematically analyzed. The current study combined retrograde tracing and immunohistochemistry/in situ hybridization to identify the specific sites of glutamatergic and GABAergic inputs to the DMH, mPOA, and BST. Following Fluoro-gold (FG) injections in the DMH, retrogradely labeled cells co-localized with vesicular glutamate transporter mRNA in the prefrontal cortex, ventral hippocampus, and paraventricular thalamus. Co-localization of FG and glutamic acid decarboxylase mRNA was present throughout the central and medial amygdaloid nuclei and septal area. In addition, the mPOA received predominantly GABAergic input from the septum, amygdala, and BST. The BST received glutamatergic projections from the hippocampus and basomedial amygdala, whereas, GABAergic inputs arose from central and medial amygdaloid nuclei. Thus, discrete sets of neurons in the hypothalamus and BST are positioned to summate limbic inputs into PVN regulation and may play a role in HPA dysfunction and stress-related illness.
Literatur
Zurück zum Zitat Bailey TW, Dimicco JA (2001) Chemical stimulation of the dorsomedial hypothalamus elevates plasma ACTH in conscious rats. Am J Physiol Regul Integr Comp Physiol 280:R8–R15PubMed Bailey TW, Dimicco JA (2001) Chemical stimulation of the dorsomedial hypothalamus elevates plasma ACTH in conscious rats. Am J Physiol Regul Integr Comp Physiol 280:R8–R15PubMed
Zurück zum Zitat Bartanusz V, Muller D, Gaillard RC, Streit P, Vutskits L, Kiss JZ (2004) Local gamma-aminobutyric acid and glutamate circuit control of hypophysiotropic corticotropin-releasing factor neuron activity in the paraventricular nucleus of the hypothalamus. Eur J Neurosci 19:777–782PubMedCrossRef Bartanusz V, Muller D, Gaillard RC, Streit P, Vutskits L, Kiss JZ (2004) Local gamma-aminobutyric acid and glutamate circuit control of hypophysiotropic corticotropin-releasing factor neuron activity in the paraventricular nucleus of the hypothalamus. Eur J Neurosci 19:777–782PubMedCrossRef
Zurück zum Zitat Bienkowski MS, Rinaman L (2012) Common and distinct neural inputs to the medial central nucleus of the amygdala and anterior ventrolateral bed nucleus of stria terminalis in rats. Brain Struct Funct 218(1):187–208PubMedCentralPubMedCrossRef Bienkowski MS, Rinaman L (2012) Common and distinct neural inputs to the medial central nucleus of the amygdala and anterior ventrolateral bed nucleus of stria terminalis in rats. Brain Struct Funct 218(1):187–208PubMedCentralPubMedCrossRef
Zurück zum Zitat Boudaba C, Szabo K, Tasker JG (1996) Physiological mapping of local inhibitory inputs to the hypothalamic paraventricular nucleus. J Neurosci 16:7151–7160PubMed Boudaba C, Szabo K, Tasker JG (1996) Physiological mapping of local inhibitory inputs to the hypothalamic paraventricular nucleus. J Neurosci 16:7151–7160PubMed
Zurück zum Zitat Bowers G, Cullinan WE, Herman JP (1998) Region-specific regulation of glutamic acid decarboxylase (GAD) mRNA expression in central stress circuits. J Neurosci 18:5938–5947PubMed Bowers G, Cullinan WE, Herman JP (1998) Region-specific regulation of glutamic acid decarboxylase (GAD) mRNA expression in central stress circuits. J Neurosci 18:5938–5947PubMed
Zurück zum Zitat Canteras NS, Simerly RB, Swanson LW (1992) Connections of the posterior nucleus of the amygdala. J Comp Neurol 324:143–179PubMedCrossRef Canteras NS, Simerly RB, Swanson LW (1992) Connections of the posterior nucleus of the amygdala. J Comp Neurol 324:143–179PubMedCrossRef
Zurück zum Zitat Canteras NS, Simerly RB, Swanson LW (1995) Organization of projections from the medial nucleus of the amygdala: a PHAL study in the rat. J Comp Neurol 360:213–245PubMedCrossRef Canteras NS, Simerly RB, Swanson LW (1995) Organization of projections from the medial nucleus of the amygdala: a PHAL study in the rat. J Comp Neurol 360:213–245PubMedCrossRef
Zurück zum Zitat Choi DC, Furay AR, Evanson NK, Ostrander MM, Ulrich-Lai YM, Herman JP (2007) Bed nucleus of the stria terminalis subregions differentially regulate hypothalamic-pituitary-adrenal axis activity: implications for the integration of limbic inputs. J Neurosci 27:2025–2034PubMedCrossRef Choi DC, Furay AR, Evanson NK, Ostrander MM, Ulrich-Lai YM, Herman JP (2007) Bed nucleus of the stria terminalis subregions differentially regulate hypothalamic-pituitary-adrenal axis activity: implications for the integration of limbic inputs. J Neurosci 27:2025–2034PubMedCrossRef
Zurück zum Zitat Choi DC, Evanson NK, Furay AR, Ulrich-Lai YM, Ostrander MM, Herman JP (2008a) The anteroventral bed nucleus of the stria terminalis differentially regulates hypothalamic-pituitary-adrenocortical axis responses to acute and chronic stress. Endocrinology 149:818–826PubMedCentralPubMedCrossRef Choi DC, Evanson NK, Furay AR, Ulrich-Lai YM, Ostrander MM, Herman JP (2008a) The anteroventral bed nucleus of the stria terminalis differentially regulates hypothalamic-pituitary-adrenocortical axis responses to acute and chronic stress. Endocrinology 149:818–826PubMedCentralPubMedCrossRef
Zurück zum Zitat Choi DC, Furay AR, Evanson NK, Ulrich-Lai YM, Nguyen MM, Ostrander MM, Herman JP (2008b) The role of the posterior medial bed nucleus of the stria terminalis in modulating hypothalamic-pituitary-adrenocortical axis responsiveness to acute and chronic stress. Psychoneuroendocrinology 33:659–669PubMedCentralPubMedCrossRef Choi DC, Furay AR, Evanson NK, Ulrich-Lai YM, Nguyen MM, Ostrander MM, Herman JP (2008b) The role of the posterior medial bed nucleus of the stria terminalis in modulating hypothalamic-pituitary-adrenocortical axis responsiveness to acute and chronic stress. Psychoneuroendocrinology 33:659–669PubMedCentralPubMedCrossRef
Zurück zum Zitat Cole RL, Sawchenko PE (2002) Neurotransmitter regulation of cellular activation and neuropeptide gene expression in the paraventricular nucleus of the hypothalamus. J Neurosci 22:959–969PubMed Cole RL, Sawchenko PE (2002) Neurotransmitter regulation of cellular activation and neuropeptide gene expression in the paraventricular nucleus of the hypothalamus. J Neurosci 22:959–969PubMed
Zurück zum Zitat Conrad LC, Pfaff DW (1976) Autoradiographic tracing of nucleus accumbens efferents in the rat. Brain Res 113:589–596PubMedCrossRef Conrad LC, Pfaff DW (1976) Autoradiographic tracing of nucleus accumbens efferents in the rat. Brain Res 113:589–596PubMedCrossRef
Zurück zum Zitat Cullinan WE, Herman JP, Watson SJ (1993) Ventral subicular interaction with the hypothalamic paraventricular nucleus: evidence for a relay in the bed nucleus of the stria terminalis. J Comp Neurol 332:1–20PubMedCrossRef Cullinan WE, Herman JP, Watson SJ (1993) Ventral subicular interaction with the hypothalamic paraventricular nucleus: evidence for a relay in the bed nucleus of the stria terminalis. J Comp Neurol 332:1–20PubMedCrossRef
Zurück zum Zitat Cullinan WE, Herman JP, Battaglia DF, Akil H, Watson SJ (1995) Pattern and time course of immediate early gene expression in rat brain following acute stress. Neuroscience 64:477–505PubMedCrossRef Cullinan WE, Herman JP, Battaglia DF, Akil H, Watson SJ (1995) Pattern and time course of immediate early gene expression in rat brain following acute stress. Neuroscience 64:477–505PubMedCrossRef
Zurück zum Zitat Cullinan WE, Helmreich DL, Watson SJ (1996) Fos expression in forebrain afferents to the hypothalamic paraventricular nucleus following swim stress. J Comp Neurol 368:88–99PubMedCrossRef Cullinan WE, Helmreich DL, Watson SJ (1996) Fos expression in forebrain afferents to the hypothalamic paraventricular nucleus following swim stress. J Comp Neurol 368:88–99PubMedCrossRef
Zurück zum Zitat Cullinan WE, Ziegler DR, Herman JP (2008) Functional role of local GABAergic influences on the HPA axis. Brain Struct Funct 213:63–72PubMedCrossRef Cullinan WE, Ziegler DR, Herman JP (2008) Functional role of local GABAergic influences on the HPA axis. Brain Struct Funct 213:63–72PubMedCrossRef
Zurück zum Zitat Davis JF, Choi DL, Schurdak JD, Fitzgerald MF, Clegg DJ, Lipton JW, Figlewicz DP, Benoit SC (2011) Leptin regulates energy balance and motivation through action at distinct neural circuits. Biol Psychiatry 69:668–674PubMedCentralPubMedCrossRef Davis JF, Choi DL, Schurdak JD, Fitzgerald MF, Clegg DJ, Lipton JW, Figlewicz DP, Benoit SC (2011) Leptin regulates energy balance and motivation through action at distinct neural circuits. Biol Psychiatry 69:668–674PubMedCentralPubMedCrossRef
Zurück zum Zitat Dayas CV, Buller KM, Day TA (1999) Neuroendocrine responses to an emotional stressor: evidence for involvement of the medial but not the central amygdala. Eur J Neurosci 11:2312–2322PubMedCrossRef Dayas CV, Buller KM, Day TA (1999) Neuroendocrine responses to an emotional stressor: evidence for involvement of the medial but not the central amygdala. Eur J Neurosci 11:2312–2322PubMedCrossRef
Zurück zum Zitat DiMicco JA, Abshire VM, Hankins KD, Sample RH, Wible JH Jr (1986) Microinjection of GABA antagonists into posterior hypothalamus elevates heart rate in anesthetized rats. Neuropharmacology 25:1063–1066PubMedCrossRef DiMicco JA, Abshire VM, Hankins KD, Sample RH, Wible JH Jr (1986) Microinjection of GABA antagonists into posterior hypothalamus elevates heart rate in anesthetized rats. Neuropharmacology 25:1063–1066PubMedCrossRef
Zurück zum Zitat DiMicco JA, Stotz-Potter EH, Monroe AJ, Morin SM (1996) Role of the dorsomedial hypothalamus in the cardiovascular response to stress. Clin Exp Pharmacol Physiol 23:171–176PubMedCrossRef DiMicco JA, Stotz-Potter EH, Monroe AJ, Morin SM (1996) Role of the dorsomedial hypothalamus in the cardiovascular response to stress. Clin Exp Pharmacol Physiol 23:171–176PubMedCrossRef
Zurück zum Zitat Dong HW, Swanson LW (2004) Projections from bed nuclei of the stria terminalis, posterior division: implications for cerebral hemisphere regulation of defensive and reproductive behaviors. J Comp Neurol 471:396–433PubMedCrossRef Dong HW, Swanson LW (2004) Projections from bed nuclei of the stria terminalis, posterior division: implications for cerebral hemisphere regulation of defensive and reproductive behaviors. J Comp Neurol 471:396–433PubMedCrossRef
Zurück zum Zitat Dong HW, Swanson LW (2006a) Projections from bed nuclei of the stria terminalis, anteromedial area: cerebral hemisphere integration of neuroendocrine, autonomic, and behavioral aspects of energy balance. J Comp Neurol 494:142–178PubMedCentralPubMedCrossRef Dong HW, Swanson LW (2006a) Projections from bed nuclei of the stria terminalis, anteromedial area: cerebral hemisphere integration of neuroendocrine, autonomic, and behavioral aspects of energy balance. J Comp Neurol 494:142–178PubMedCentralPubMedCrossRef
Zurück zum Zitat Dong HW, Swanson LW (2006b) Projections from bed nuclei of the stria terminalis, dorsomedial nucleus: implications for cerebral hemisphere integration of neuroendocrine, autonomic, and drinking responses. J Comp Neurol 494:75–107PubMedCentralPubMedCrossRef Dong HW, Swanson LW (2006b) Projections from bed nuclei of the stria terminalis, dorsomedial nucleus: implications for cerebral hemisphere integration of neuroendocrine, autonomic, and drinking responses. J Comp Neurol 494:75–107PubMedCentralPubMedCrossRef
Zurück zum Zitat Dong HW, Petrovich GD, Swanson LW (2001a) Topography of projections from amygdala to bed nuclei of the stria terminalis. Brain Res Brain Res Rev 38:192–246PubMedCrossRef Dong HW, Petrovich GD, Swanson LW (2001a) Topography of projections from amygdala to bed nuclei of the stria terminalis. Brain Res Brain Res Rev 38:192–246PubMedCrossRef
Zurück zum Zitat Dong HW, Petrovich GD, Watts AG, Swanson LW (2001b) Basic organization of projections from the oval and fusiform nuclei of the bed nuclei of the stria terminalis in adult rat brain. J Comp Neurol 436:430–455PubMedCrossRef Dong HW, Petrovich GD, Watts AG, Swanson LW (2001b) Basic organization of projections from the oval and fusiform nuclei of the bed nuclei of the stria terminalis in adult rat brain. J Comp Neurol 436:430–455PubMedCrossRef
Zurück zum Zitat Duvarci S, Bauer EP, Pare D (2009) The bed nucleus of the stria terminalis mediates inter-individual variations in anxiety and fear. J Neurosci 29:10357–10361PubMedCentralPubMedCrossRef Duvarci S, Bauer EP, Pare D (2009) The bed nucleus of the stria terminalis mediates inter-individual variations in anxiety and fear. J Neurosci 29:10357–10361PubMedCentralPubMedCrossRef
Zurück zum Zitat Fontes MA, Xavier CH, de Menezes RC, Dimicco JA (2011) The dorsomedial hypothalamus and the central pathways involved in the cardiovascular response to emotional stress. Neuroscience 184:64–74PubMedCrossRef Fontes MA, Xavier CH, de Menezes RC, Dimicco JA (2011) The dorsomedial hypothalamus and the central pathways involved in the cardiovascular response to emotional stress. Neuroscience 184:64–74PubMedCrossRef
Zurück zum Zitat Gotsick JE, Marshall RC (1972) Time course of the septal rage syndrome. Physiol Behav 9:685–687PubMedCrossRef Gotsick JE, Marshall RC (1972) Time course of the septal rage syndrome. Physiol Behav 9:685–687PubMedCrossRef
Zurück zum Zitat Groenewegen HJ, Russchen FT (1984) Organization of the efferent projections of the nucleus accumbens to pallidal, hypothalamic, and mesencephalic structures: a tracing and immunohistochemical study in the cat. J Comp Neurol 223:347–367PubMedCrossRef Groenewegen HJ, Russchen FT (1984) Organization of the efferent projections of the nucleus accumbens to pallidal, hypothalamic, and mesencephalic structures: a tracing and immunohistochemical study in the cat. J Comp Neurol 223:347–367PubMedCrossRef
Zurück zum Zitat Hakvoort Schwerdtfeger RM, Menard JL (2008) The lateral hypothalamus and anterior hypothalamic nucleus differentially contribute to rats’ defensive responses in the elevated plus-maze and shock-probe burying tests. Physiol Behav 93:697–705PubMedCrossRef Hakvoort Schwerdtfeger RM, Menard JL (2008) The lateral hypothalamus and anterior hypothalamic nucleus differentially contribute to rats’ defensive responses in the elevated plus-maze and shock-probe burying tests. Physiol Behav 93:697–705PubMedCrossRef
Zurück zum Zitat Herman JP, Figueiredo H, Mueller NK, Ulrich-Lai Y, Ostrander MM, Choi DC, Cullinan WE (2003) Central mechanisms of stress integration: hierarchical circuitry controlling hypothalamo-pituitary-adrenocortical responsiveness. Front Neuroendocrinol 24:151–180PubMedCrossRef Herman JP, Figueiredo H, Mueller NK, Ulrich-Lai Y, Ostrander MM, Choi DC, Cullinan WE (2003) Central mechanisms of stress integration: hierarchical circuitry controlling hypothalamo-pituitary-adrenocortical responsiveness. Front Neuroendocrinol 24:151–180PubMedCrossRef
Zurück zum Zitat Hurley KM, Herbert H, Moga MM, Saper CB (1991) Efferent projections of the infralimbic cortex of the rat. J Comp Neurol 308:249–276PubMedCrossRef Hurley KM, Herbert H, Moga MM, Saper CB (1991) Efferent projections of the infralimbic cortex of the rat. J Comp Neurol 308:249–276PubMedCrossRef
Zurück zum Zitat Kerman IA, Akil H, Watson SJ (2006) Rostral elements of sympatho-motor circuitry: a virally mediated transsynaptic tracing study. J Neurosci 26:3423–3433PubMedCrossRef Kerman IA, Akil H, Watson SJ (2006) Rostral elements of sympatho-motor circuitry: a virally mediated transsynaptic tracing study. J Neurosci 26:3423–3433PubMedCrossRef
Zurück zum Zitat Kohler C (1990) Subicular projections to the hypothalamus and brainstem: some novel aspects revealed in the rat by the anterograde Phaseolus vulgaris leukoagglutinin (PHA-L) tracing method. Prog Brain Res 83:59–69PubMedCrossRef Kohler C (1990) Subicular projections to the hypothalamus and brainstem: some novel aspects revealed in the rat by the anterograde Phaseolus vulgaris leukoagglutinin (PHA-L) tracing method. Prog Brain Res 83:59–69PubMedCrossRef
Zurück zum Zitat LeDoux JE, Iwata J, Cicchetti P, Reis DJ (1988) Different projections of the central amygdaloid nucleus mediate autonomic and behavioral correlates of conditioned fear. J Neurosci 8:2517–2529PubMed LeDoux JE, Iwata J, Cicchetti P, Reis DJ (1988) Different projections of the central amygdaloid nucleus mediate autonomic and behavioral correlates of conditioned fear. J Neurosci 8:2517–2529PubMed
Zurück zum Zitat Lisa M, Marmo E, Wible JH Jr, DiMicco JA (1989) Injection of muscimol into posterior hypothalamus blocks stress-induced tachycardia. Am J Physiol 257:R246–R251PubMed Lisa M, Marmo E, Wible JH Jr, DiMicco JA (1989) Injection of muscimol into posterior hypothalamus blocks stress-induced tachycardia. Am J Physiol 257:R246–R251PubMed
Zurück zum Zitat Morin SM, Stotz-Potter EH, DiMicco JA (2001) Injection of muscimol in dorsomedial hypothalamus and stress-induced Fos expression in paraventricular nucleus. Am J Physiol Regul Integr Comp Physiol 280:R1276–R1284PubMed Morin SM, Stotz-Potter EH, DiMicco JA (2001) Injection of muscimol in dorsomedial hypothalamus and stress-induced Fos expression in paraventricular nucleus. Am J Physiol Regul Integr Comp Physiol 280:R1276–R1284PubMed
Zurück zum Zitat Motta SC, Goto M, Gouveia FV, Baldo MV, Canteras NS, Swanson LW (2009) Dissecting the brain’s fear system reveals the hypothalamus is critical for responding in subordinate conspecific intruders. Proc Natl Acad Sci USA 106:4870–4875PubMedCentralPubMedCrossRef Motta SC, Goto M, Gouveia FV, Baldo MV, Canteras NS, Swanson LW (2009) Dissecting the brain’s fear system reveals the hypothalamus is critical for responding in subordinate conspecific intruders. Proc Natl Acad Sci USA 106:4870–4875PubMedCentralPubMedCrossRef
Zurück zum Zitat Myers B, McKlveen JM, Herman JP (2012) Neural regulation of the stress response: the many faces of feedback. Cell Mol Neurobiol 32:683–694CrossRef Myers B, McKlveen JM, Herman JP (2012) Neural regulation of the stress response: the many faces of feedback. Cell Mol Neurobiol 32:683–694CrossRef
Zurück zum Zitat Prewitt CM, Herman JP (1994) Lesion of the central nucleus of the amygdala decreases basal CRH mRNA expression and stress-induced ACTH release. Ann N Y Acad Sci 746:438–440PubMedCrossRef Prewitt CM, Herman JP (1994) Lesion of the central nucleus of the amygdala decreases basal CRH mRNA expression and stress-induced ACTH release. Ann N Y Acad Sci 746:438–440PubMedCrossRef
Zurück zum Zitat Prewitt CM, Herman JP (1998) Anatomical interactions between the central amygdaloid nucleus and the hypothalamic paraventricular nucleus of the rat: a dual tract-tracing analysis. J Chem Neuroanat 15:173–185PubMedCrossRef Prewitt CM, Herman JP (1998) Anatomical interactions between the central amygdaloid nucleus and the hypothalamic paraventricular nucleus of the rat: a dual tract-tracing analysis. J Chem Neuroanat 15:173–185PubMedCrossRef
Zurück zum Zitat Price JL (2005) Free will versus survival: brain systems that underlie intrinsic constraints on behavior. J Comp Neurol 493:132–139PubMedCrossRef Price JL (2005) Free will versus survival: brain systems that underlie intrinsic constraints on behavior. J Comp Neurol 493:132–139PubMedCrossRef
Zurück zum Zitat Radley JJ, Sawchenko PE (2011) A common substrate for prefrontal and hippocampal inhibition of the neuroendocrine stress response. J Neurosci 31:9683–9695PubMedCentralPubMedCrossRef Radley JJ, Sawchenko PE (2011) A common substrate for prefrontal and hippocampal inhibition of the neuroendocrine stress response. J Neurosci 31:9683–9695PubMedCentralPubMedCrossRef
Zurück zum Zitat Radley JJ, Gosselink KL, Sawchenko PE (2009) A discrete GABAergic relay mediates medial prefrontal cortical inhibition of the neuroendocrine stress response. J Neurosci 29:7330–7340PubMedCentralPubMedCrossRef Radley JJ, Gosselink KL, Sawchenko PE (2009) A discrete GABAergic relay mediates medial prefrontal cortical inhibition of the neuroendocrine stress response. J Neurosci 29:7330–7340PubMedCentralPubMedCrossRef
Zurück zum Zitat Rivier C, Vale W (1985) Effect of the long-term administration of corticotropin-releasing factor on the pituitary-adrenal and pituitary-gonadal axis in the male rat. J Clin Invest 75:689–694PubMedCentralPubMedCrossRef Rivier C, Vale W (1985) Effect of the long-term administration of corticotropin-releasing factor on the pituitary-adrenal and pituitary-gonadal axis in the male rat. J Clin Invest 75:689–694PubMedCentralPubMedCrossRef
Zurück zum Zitat Roland BL, Sawchenko PE (1993) Local origins of some GABAergic projections to the paraventricular and supraoptic nuclei of the hypothalamus in the rat. J Comp Neurol 332:123–143PubMedCrossRef Roland BL, Sawchenko PE (1993) Local origins of some GABAergic projections to the paraventricular and supraoptic nuclei of the hypothalamus in the rat. J Comp Neurol 332:123–143PubMedCrossRef
Zurück zum Zitat Schnurr R (1972) Localization of the septal rage syndrome in Long-Evans rats. J Comp Physiol Psychol 81:291–296PubMedCrossRef Schnurr R (1972) Localization of the septal rage syndrome in Long-Evans rats. J Comp Physiol Psychol 81:291–296PubMedCrossRef
Zurück zum Zitat Shekhar A (1993) GABA receptors in the region of the dorsomedial hypothalamus of rats regulate anxiety in the elevated plus-maze test. I. Behavioral measures. Brain Res 627:9–16PubMedCrossRef Shekhar A (1993) GABA receptors in the region of the dorsomedial hypothalamus of rats regulate anxiety in the elevated plus-maze test. I. Behavioral measures. Brain Res 627:9–16PubMedCrossRef
Zurück zum Zitat Shepard JD, Barron KW, Myers DA (2003) Stereotaxic localization of corticosterone to the amygdala enhances hypothalamo-pituitary-adrenal responses to behavioral stress. Brain Res 963:203–213PubMedCrossRef Shepard JD, Barron KW, Myers DA (2003) Stereotaxic localization of corticosterone to the amygdala enhances hypothalamo-pituitary-adrenal responses to behavioral stress. Brain Res 963:203–213PubMedCrossRef
Zurück zum Zitat Simerly RB, Swanson LW (1986) The organization of neural inputs to the medial preoptic nucleus of the rat. J Comp Neurol 246:312–342PubMedCrossRef Simerly RB, Swanson LW (1986) The organization of neural inputs to the medial preoptic nucleus of the rat. J Comp Neurol 246:312–342PubMedCrossRef
Zurück zum Zitat Singewald GM, Rjabokon A, Singewald N, Ebner K (2011) The modulatory role of the lateral septum on neuroendocrine and behavioral stress responses. Neuropsychopharmacology 36:793–804PubMedCentralPubMedCrossRef Singewald GM, Rjabokon A, Singewald N, Ebner K (2011) The modulatory role of the lateral septum on neuroendocrine and behavioral stress responses. Neuropsychopharmacology 36:793–804PubMedCentralPubMedCrossRef
Zurück zum Zitat Solomon MB, Jones K, Packard BA, Herman JP (2010) The medial amygdala modulates body weight but not neuroendocrine responses to chronic stress. J Neuroendocrinol 22:13–23PubMedCrossRef Solomon MB, Jones K, Packard BA, Herman JP (2010) The medial amygdala modulates body weight but not neuroendocrine responses to chronic stress. J Neuroendocrinol 22:13–23PubMedCrossRef
Zurück zum Zitat Somogyi P, Freund TF, Hodgson AJ, Somogyi J, Beroukas D, Chubb IW (1985) Identified axo–axonic cells are immunoreactive for GABA in the hippocampus and visual cortex of the cat. Brain Res 332:143–149PubMedCrossRef Somogyi P, Freund TF, Hodgson AJ, Somogyi J, Beroukas D, Chubb IW (1985) Identified axo–axonic cells are immunoreactive for GABA in the hippocampus and visual cortex of the cat. Brain Res 332:143–149PubMedCrossRef
Zurück zum Zitat Staiger JF, Nurnberger F (1991) The efferent connections of the lateral septal nucleus in the guinea pig: intrinsic connectivity of the septum and projections to other telencephalic areas. Cell Tissue Res 264:415–426PubMedCrossRef Staiger JF, Nurnberger F (1991) The efferent connections of the lateral septal nucleus in the guinea pig: intrinsic connectivity of the septum and projections to other telencephalic areas. Cell Tissue Res 264:415–426PubMedCrossRef
Zurück zum Zitat Swanson LW (2004) Brain maps: structure of the rat brain, 3rd edn. Elsevier, Amsterdam Swanson LW (2004) Brain maps: structure of the rat brain, 3rd edn. Elsevier, Amsterdam
Zurück zum Zitat Swanson LW, Sawchenko PE, Rivier J, Vale WW (1983) Organization of ovine corticotropin-releasing factor immunoreactive cells and fibers in the rat brain: an immunohistochemical study. Neuroendocrinology 36:165–186PubMedCrossRef Swanson LW, Sawchenko PE, Rivier J, Vale WW (1983) Organization of ovine corticotropin-releasing factor immunoreactive cells and fibers in the rat brain: an immunohistochemical study. Neuroendocrinology 36:165–186PubMedCrossRef
Zurück zum Zitat Thompson RH, Swanson LW (1998) Organization of inputs to the dorsomedial nucleus of the hypothalamus: a reexamination with Fluorogold and PHAL in the rat. Brain Res Brain Res Rev 27:89–118PubMedCrossRef Thompson RH, Swanson LW (1998) Organization of inputs to the dorsomedial nucleus of the hypothalamus: a reexamination with Fluorogold and PHAL in the rat. Brain Res Brain Res Rev 27:89–118PubMedCrossRef
Zurück zum Zitat Ulrich-Lai YM, Herman JP (2009) Neural regulation of endocrine and autonomic stress responses. Nat Rev Neurosci 10:397–409PubMedCrossRef Ulrich-Lai YM, Herman JP (2009) Neural regulation of endocrine and autonomic stress responses. Nat Rev Neurosci 10:397–409PubMedCrossRef
Zurück zum Zitat Ulrich-Lai YM, Jones KR, Ziegler DR, Cullinan WE, Herman JP (2011) Forebrain origins of glutamatergic innervation to the rat paraventricular nucleus of the hypothalamus: differential inputs to the anterior versus posterior subregions. J Comp Neurol 519:1301–1319PubMedCentralPubMedCrossRef Ulrich-Lai YM, Jones KR, Ziegler DR, Cullinan WE, Herman JP (2011) Forebrain origins of glutamatergic innervation to the rat paraventricular nucleus of the hypothalamus: differential inputs to the anterior versus posterior subregions. J Comp Neurol 519:1301–1319PubMedCentralPubMedCrossRef
Zurück zum Zitat Vertes RP (2004) Differential projections of the infralimbic and prelimbic cortex in the rat. Synapse 51:32–58PubMedCrossRef Vertes RP (2004) Differential projections of the infralimbic and prelimbic cortex in the rat. Synapse 51:32–58PubMedCrossRef
Zurück zum Zitat Vertes RP, Hoover WB (2008) Projections of the paraventricular and paratenial nuclei of the dorsal midline thalamus in the rat. J Comp Neurol 508:212–237PubMedCrossRef Vertes RP, Hoover WB (2008) Projections of the paraventricular and paratenial nuclei of the dorsal midline thalamus in the rat. J Comp Neurol 508:212–237PubMedCrossRef
Zurück zum Zitat Viau V, Meaney MJ (1996) The inhibitory effect of testosterone on hypothalamic-pituitary-adrenal responses to stress is mediated by the medial preoptic area. J Neurosci 16:1866–1876PubMed Viau V, Meaney MJ (1996) The inhibitory effect of testosterone on hypothalamic-pituitary-adrenal responses to stress is mediated by the medial preoptic area. J Neurosci 16:1866–1876PubMed
Zurück zum Zitat Walker DL, Miles LA, Davis M (2009) Selective participation of the bed nucleus of the stria terminalis and CRF in sustained anxiety-like versus phasic fear-like responses. Prog Neuropsychopharmacol Biol Psychiatry 33:1291–1308PubMedCentralPubMedCrossRef Walker DL, Miles LA, Davis M (2009) Selective participation of the bed nucleus of the stria terminalis and CRF in sustained anxiety-like versus phasic fear-like responses. Prog Neuropsychopharmacol Biol Psychiatry 33:1291–1308PubMedCentralPubMedCrossRef
Zurück zum Zitat Weller KL, Smith DA (1982) Afferent connections to the bed nucleus of the stria terminalis. Brain Res 232:255–270PubMedCrossRef Weller KL, Smith DA (1982) Afferent connections to the bed nucleus of the stria terminalis. Brain Res 232:255–270PubMedCrossRef
Zurück zum Zitat Williamson M, Viau V (2007) Androgen receptor expressing neurons that project to the paraventricular nucleus of the hypothalamus in the male rat. J Comp Neurol 503:717–740PubMedCrossRef Williamson M, Viau V (2007) Androgen receptor expressing neurons that project to the paraventricular nucleus of the hypothalamus in the male rat. J Comp Neurol 503:717–740PubMedCrossRef
Zurück zum Zitat Williamson M, Viau V (2008) Selective contributions of the medial preoptic nucleus to testosterone-dependant regulation of the paraventricular nucleus of the hypothalamus and the HPA axis. Am J Physiol Regul Integr Comp Physiol 295:R1020–R1030PubMedCrossRef Williamson M, Viau V (2008) Selective contributions of the medial preoptic nucleus to testosterone-dependant regulation of the paraventricular nucleus of the hypothalamus and the HPA axis. Am J Physiol Regul Integr Comp Physiol 295:R1020–R1030PubMedCrossRef
Zurück zum Zitat Williamson M, Bingham B, Gray M, Innala L, Viau V (2010) The medial preoptic nucleus integrates the central influences of testosterone on the paraventricular nucleus of the hypothalamus and its extended circuitries. J Neurosci 30:11762–11770PubMedCrossRef Williamson M, Bingham B, Gray M, Innala L, Viau V (2010) The medial preoptic nucleus integrates the central influences of testosterone on the paraventricular nucleus of the hypothalamus and its extended circuitries. J Neurosci 30:11762–11770PubMedCrossRef
Zurück zum Zitat Xu Y, Day TA, Buller KM (1999) The central amygdala modulates hypothalamic-pituitary-adrenal axis responses to systemic interleukin-1beta administration. Neuroscience 94:175–183PubMedCrossRef Xu Y, Day TA, Buller KM (1999) The central amygdala modulates hypothalamic-pituitary-adrenal axis responses to systemic interleukin-1beta administration. Neuroscience 94:175–183PubMedCrossRef
Zurück zum Zitat Ziegler DR, Herman JP (2000) Local integration of glutamate signaling in the hypothalamic paraventricular region: regulation of glucocorticoid stress responses. Endocrinology 141:4801–4804PubMedCrossRef Ziegler DR, Herman JP (2000) Local integration of glutamate signaling in the hypothalamic paraventricular region: regulation of glucocorticoid stress responses. Endocrinology 141:4801–4804PubMedCrossRef
Zurück zum Zitat Ziegler DR, Cullinan WE, Herman JP (2002) Distribution of vesicular glutamate transporter mRNA in rat hypothalamus. J Comp Neurol 448:217–229PubMedCrossRef Ziegler DR, Cullinan WE, Herman JP (2002) Distribution of vesicular glutamate transporter mRNA in rat hypothalamus. J Comp Neurol 448:217–229PubMedCrossRef
Zurück zum Zitat Ziegler DR, Edwards MR, Ulrich-Lai YM, Herman JP, Cullinan WE (2012) Brainstem origins of glutamatergic innervation of the rat hypothalamic paraventricular nucleus. J Comp Neurol 520:2369–2394PubMedCrossRef Ziegler DR, Edwards MR, Ulrich-Lai YM, Herman JP, Cullinan WE (2012) Brainstem origins of glutamatergic innervation of the rat hypothalamic paraventricular nucleus. J Comp Neurol 520:2369–2394PubMedCrossRef
Metadaten
Titel
Central stress-integrative circuits: forebrain glutamatergic and GABAergic projections to the dorsomedial hypothalamus, medial preoptic area, and bed nucleus of the stria terminalis
verfasst von
Brent Myers
C. Mark Dolgas
John Kasckow
William E. Cullinan
James P. Herman
Publikationsdatum
01.07.2014
Verlag
Springer Berlin Heidelberg
Erschienen in
Brain Structure and Function / Ausgabe 4/2014
Print ISSN: 1863-2653
Elektronische ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-013-0566-y

Weitere Artikel der Ausgabe 4/2014

Brain Structure and Function 4/2014 Zur Ausgabe

Leitlinien kompakt für die Neurologie

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Update Neurologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.