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暴露于心理应激的雌性催产素基因敲除小鼠内侧杏仁核中皮质酮浓度升高且Fos表达减弱。

Enhanced corticosterone concentrations and attenuated Fos expression in the medial amygdala of female oxytocin knockout mice exposed to psychogenic stress.

作者信息

Mantella Rose C, Vollmer Regis R, Rinaman Linda, Li Xia, Amico Janet A

机构信息

Department of Pharmaceutical Sciences, University of Pittsburgh, 904 Salk Hall, Pittsburgh, PA 15261, USA.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2004 Dec;287(6):R1494-504. doi: 10.1152/ajpregu.00387.2004. Epub 2004 Aug 19.

DOI:10.1152/ajpregu.00387.2004
PMID:15319220
Abstract

Centrally released oxytocin (OT) is believed to attenuate the response of the hypothalamic-pituitary-adrenal (HPA) axis to psychogenic stress. To test this hypothesis, we measured plasma corticosterone concentrations and Fos-immunoreactive protein in the paraventricular nucleus of the hypothalamus (PVN) and limbic brain areas of female wild-type and OT knockout mice that were exposed to a shaker platform, a predominantly psychogenic stress. Plasma corticosterone concentrations after shaker stress were higher in female OT knockout mice than wild-type mice. Genotypic differences in the corticosterone response after shaker stress persisted across all stages of the estrous cycle and when mice were conditioned to repeated shaker stress. Shaker stress activated Fos in OT-positive neurons of wild-type mice and corticotropin-releasing hormone-positive, but not vasopressin-positive, neurons within the PVN of wild-type and OT knockout mice. Fos expression was also increased after shaker stress in the bed nucleus of the stria terminalis, medial and central nuclei of the amygdala, medial preoptic area, and the paraventricular nucleus of the thalamus of wild-type and OT knockout mice. However, Fos expression in the medial amygdala was significantly lower in female OT knockout mice than wild-type mice. Our findings indicate heightened stress-induced corticosterone release in female OT knockout mice. Therefore, the results suggest that OT pathways play a role in attenuating the HPA axis response to psychogenic stress in female mice.

摘要

中枢释放的催产素(OT)被认为可减弱下丘脑 - 垂体 - 肾上腺(HPA)轴对心理性应激的反应。为了验证这一假设,我们测量了暴露于振动平台(一种主要的心理性应激源)的雌性野生型和OT基因敲除小鼠下丘脑室旁核(PVN)和边缘脑区中血浆皮质酮浓度以及Fos免疫反应性蛋白。振动应激后,雌性OT基因敲除小鼠的血浆皮质酮浓度高于野生型小鼠。振动应激后皮质酮反应的基因型差异在整个发情周期的所有阶段以及小鼠适应重复振动应激时均持续存在。振动应激激活了野生型小鼠OT阳性神经元以及野生型和OT基因敲除小鼠PVN内促肾上腺皮质激素释放激素阳性而非加压素阳性神经元中的Fos。振动应激后,野生型和OT基因敲除小鼠终纹床核、杏仁核内侧和中央核、内侧视前区以及丘脑室旁核中的Fos表达也增加。然而,雌性OT基因敲除小鼠内侧杏仁核中的Fos表达明显低于野生型小鼠。我们的研究结果表明雌性OT基因敲除小鼠应激诱导的皮质酮释放增强。因此,结果表明OT通路在减弱雌性小鼠HPA轴对心理性应激的反应中起作用。

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