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腹侧海马下脚损伤后前脑GABA能应激回路的调节

Regulation of forebrain GABAergic stress circuits following lesion of the ventral subiculum.

作者信息

Mueller Nancy K, Dolgas C Mark, Herman James P

机构信息

Department of Psychiatry, University of Cincinnati, 2170 E. Galbraith Road, Cincinnati, OH 45237-0506, USA.

出版信息

Brain Res. 2006 Oct 20;1116(1):132-42. doi: 10.1016/j.brainres.2006.07.101. Epub 2006 Sep 18.

Abstract

Ventral subiculum (vSUB) lesions enhance corticosterone responses to psychogenic stressors via trans-synaptic influences on paraventricular nucleus (PVN) neurons. Synaptic relays likely occur in GABA-rich regions interconnecting the vSUB and PVN. The current study examines whether vSUB lesions compromise stress-induced c-fos induction and GABA biosynthetic capacity in putative limbic-hypothalamic stress relays. Male Sprague-Dawley rats received bilateral ibotenate or sham lesions of the vSUB. Animals were divided into two groups, with one group receiving exposure to novelty stress and the other left unstressed. Exposure to novelty stress increased c-fos mRNA expression in the PVN to a greater degree in vSUB lesion relative to shams, consistent with an inhibitory role for the vSUB in the HPA stress response. However, c-fos induction was not affected in other forebrain GABAergic stress pathways, such as the lateral septum, medial preoptic area or dorsomedial hypothalamus. vSUB lesions increased GAD65 or GAD67 mRNA levels in several efferent targets, including anterior and posterior subnuclei of the bed nucleus of the stria terminalis and lateral septum. Lesions did not effect stress-induced increases in GAD65 expression in principal output nuclei of the amygdala. The current data suggest that loss of vSUB innervations produces a compensatory increase in GAD expression in subcortical targets; however, this up-regulation is insufficient to block lesion-induced stress hyperresponsiveness, perhaps driven by amygdalar disinhibition of the PVN.

摘要

腹侧海马下托(vSUB)损伤通过对室旁核(PVN)神经元的跨突触影响增强皮质酮对心理应激源的反应。突触传递可能发生在连接vSUB和PVN的富含γ-氨基丁酸(GABA)的区域。本研究探讨vSUB损伤是否会损害假定的边缘-下丘脑应激传递中应激诱导的c-fos诱导和GABA生物合成能力。雄性Sprague-Dawley大鼠接受vSUB的双侧异搏亭损伤或假损伤。动物分为两组,一组暴露于新奇应激,另一组不施加应激。与假损伤组相比,暴露于新奇应激使vSUB损伤组PVN中的c-fos mRNA表达增加得更多,这与vSUB在HPA应激反应中的抑制作用一致。然而,其他前脑GABA能应激途径,如外侧隔、内侧视前区或背内侧下丘脑,其c-fos诱导不受影响。vSUB损伤增加了几个传出靶点中谷氨酸脱羧酶65(GAD65)或谷氨酸脱羧酶67(GAD67)的mRNA水平,包括终纹床核的前、后亚核和外侧隔。损伤对杏仁核主要输出核中应激诱导的GAD65表达增加没有影响。目前的数据表明,vSUB神经支配的丧失会导致皮质下靶点中GAD表达的代偿性增加;然而,这种上调不足以阻断损伤诱导的应激高反应性,这可能是由杏仁核对PVN的去抑制驱动的。

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