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大脑盐皮质激素受体在控制盐平衡和应激适应中的功能。

Brain mineralocorticoid receptor function in control of salt balance and stress-adaptation.

作者信息

de Kloet Edo Ronald, Joëls Marian

机构信息

Division of Endocrinology, Department of Medicine, Leiden University Medical Center, Leiden, The Netherlands.

Department of Translational Neuroscience, Brain Center Rudolf Magnus, University Medical Center Utrecht, The Netherlands; University of Groningen, University Medical Center Groningen, The Netherlands.

出版信息

Physiol Behav. 2017 Sep 1;178:13-20. doi: 10.1016/j.physbeh.2016.12.045. Epub 2017 Jan 13.

Abstract

We will highlight in honor of Randall Sakai the peculiar characteristics of the brain mineralocorticoid receptor (MR) in its response pattern to the classical mineralocorticoid aldosterone and the naturally occurring glucocorticoids corticosterone and cortisol. Neurons in the nucleus tractus solitarii (NTS) and circumventricular organs express MR, which mediate selectively the action of aldosterone on salt appetite, sympathetic outflow and volume regulation. The MR-containing NTS neurons innervate limbic-forebrain circuits enabling aldosterone to also modulate reciprocally arousal, motivation, fear and reward. MR expressed in abundance in this limbic-forebrain circuitry, is target of cortisol and corticosterone in modulation of appraisal processes, memory performance and selection of coping strategy. Complementary to this role of limbic MR is the action mediated by the lower affinity glucocorticoid receptors (GR), which promote subsequently memory storage of the experience and facilitate behavioral adaptation. Current evidence supports the hypothesis that an imbalance between MR- and GR-mediated actions compromises resilience and adaptation to stress.

摘要

为了纪念兰德尔·酒井,我们将重点介绍脑盐皮质激素受体(MR)对经典盐皮质激素醛固酮以及天然存在的糖皮质激素皮质酮和皮质醇的独特反应模式。孤束核(NTS)和室周器官中的神经元表达MR,其选择性地介导醛固酮对盐食欲、交感神经输出和容量调节的作用。含有MR的NTS神经元支配边缘-前脑回路,使醛固酮也能相互调节觉醒、动机、恐惧和奖赏。在该边缘-前脑回路中大量表达的MR,是皮质醇和皮质酮调节评估过程、记忆表现和应对策略选择的靶点。边缘MR的这一作用的补充是由低亲和力糖皮质激素受体(GR)介导的作用,其随后促进经验的记忆存储并促进行为适应。目前的证据支持这样一种假设,即MR和GR介导的作用之间的失衡会损害恢复力和对压力的适应能力。

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