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尿皮质素3调节神经内分泌应激反应,并在大鼠杏仁核和下丘脑受应激和糖皮质激素的调控。

Urocortin 3 modulates the neuroendocrine stress response and is regulated in rat amygdala and hypothalamus by stress and glucocorticoids.

作者信息

Jamieson Pauline M, Li Chien, Kukura Christina, Vaughan Joan, Vale Wylie

机构信息

The Clayton Foundation Laboratories for Peptide Biology, The Salk Institute for Biological Studies, La Jolla, California 92037, USA.

出版信息

Endocrinology. 2006 Oct;147(10):4578-88. doi: 10.1210/en.2006-0545. Epub 2006 Jun 29.

Abstract

The endogenous corticotropin-releasing factor (CRF) type 2 receptor (CRFR2)-selective ligand urocortin 3 is expressed in discrete subcortical brain regions with fibers distributed mainly to hypothalamic and limbic structures. Close anatomical association between major urocortin 3 terminal fields and CRFR2 in hypothalamus, lateral septum, and medial amygdala (MEA) suggest it is well placed to modulate behavioral and hormonal responses to stress. Urocortin 3 was administered intracerebroventricularly to male rats under basal conditions or before a restraint stress, and circulating ACTH, corticosterone, glucose, and insulin were measured. Urocortin 3 activated the hypothalamic-pituitary-adrenal axis under basal conditions and augmented ACTH responses to restraint stress. Elevated blood glucose with lowered insulin to glucose ratios in both groups suggested increased sympathetic activity. Circulating catecholamines were also increased by urocortin 3, providing additional evidence for sympathoadrenomedullary stimulation. Intracerebroventricular urocortin 3 increased vasopressin mRNA expression in the parvocellular division of the hypothalamic paraventricular nucleus, whereas CRF expression was unchanged, providing a possible mechanism by which urocortin 3 mediates its actions. Urocortin 3 mRNA expression was examined after exposure to stress-related paradigms. Restraint increased levels in MEA with a trend to increased expression in the rostral perifornical hypothalamic area, whereas hemorrhage and food deprivation decreased expression in MEA. Adrenalectomy markedly increased expression in the rostral perifornical hypothalamic area, and high-level corticosterone replacement restored this to control levels. The evidence that urocortin 3 has the potential to influence hormonal components of the stress response and the changes in its expression levels after stressors is consistent with a potential function for the endogenous peptide in modulating stress responses.

摘要

内源性促肾上腺皮质激素释放因子(CRF)2型受体(CRFR2)选择性配体尿皮质素3表达于离散的皮质下脑区,其纤维主要分布至下丘脑和边缘系统结构。尿皮质素3主要终末区域与下丘脑、外侧隔和内侧杏仁核(MEA)中的CRFR2之间紧密的解剖学联系表明,它在调节对应激的行为和激素反应方面具有优势。在基础条件下或束缚应激前,向雄性大鼠脑室内注射尿皮质素3,并测量循环中的促肾上腺皮质激素(ACTH)、皮质酮、葡萄糖和胰岛素。尿皮质素3在基础条件下激活下丘脑-垂体-肾上腺轴,并增强ACTH对应激的反应。两组中血糖升高而胰岛素与血糖比值降低表明交感神经活动增强。尿皮质素3还使循环中的儿茶酚胺增加,为交感肾上腺髓质刺激提供了额外证据。脑室内注射尿皮质素3增加了下丘脑室旁核小细胞部血管加压素mRNA的表达,而CRF表达未改变,这为尿皮质素3介导其作用提供了一种可能机制。在暴露于应激相关范式后,检测了尿皮质素3 mRNA的表达。束缚增加了MEA中的水平,且在喙侧穹窿周下丘脑区域有表达增加的趋势,而出血和食物剥夺降低了MEA中的表达。肾上腺切除显著增加了喙侧穹窿周下丘脑区域的表达,而高剂量皮质酮替代将其恢复至对照水平。尿皮质素3有可能影响应激反应的激素成分以及应激源后其表达水平变化的证据,与内源性肽在调节应激反应中的潜在功能一致。

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