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Hydration and beyond: neuropeptides as mediators of hydromineral balance, anxiety and stress-responsiveness

机译:水合及其他:神经肽作为矿物质平衡,焦虑和应激反应的介质

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Challenges to body fluid homeostasis can have a profound impact on hypothalamic regulation of stress responsiveness. Deficiencies in blood volume or sodium concentration leads to the generation of neural and humoral signals relayed through the hindbrain and circumventricular organs that apprise the paraventricular nucleus of the hypothalamus (PVH) of hydromineral imbalance. Collectively, these neural and humoral signals converge onto PVH neurons, including those that express corticotrophin-releasing factor (CRF), oxytocin (OT), and vasopressin, to influence their activity and initiate compensatory responses that alleviate hydromineral imbalance. Interestingly, following exposure to perceived threats to homeostasis, select limbic brain regions mediate behavioral and physiological responses to psychogenic stressors, in part, by influencing activation of the same PVH neurons that are known to maintain body fluid homeostasis. Here, we review past and present research examining interactions between hypothalamic circuits regulating body fluid homeostasis and those mediating behavioral and physiological responses to psychogenic stress.
机译:对体液稳态的挑战可能会对下丘脑对应激反应的调节产生深远影响。血容量或钠浓度的缺乏会导致神经和体液信号的产生,这些信号通过后脑和脑室周围器官传递,而脑后器官和丘脑室下丘脑室旁核(PVH)呈矿物质不平衡状态。这些神经和体液信号共同汇聚到PVH神经元上,包括表达促肾上腺皮质激素释放因子(CRF),催产素(OT)和血管加压素的神经元,以影响其活性并启动缓解水矿物质失衡的代偿性反应。有趣的是,在暴露于对稳态的感知威胁之后,部分边缘脑区域通过影响已知维持体液稳态的相同PVH神经元的激活来介导对心理压力源的行为和生理反应。在这里,我们回顾过去和现在的研究,研究调节体液稳态的下丘脑回路与介导对心理压力的行为和生理反应之间的相互作用。

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