Adaptive remodeling of the stimulus-secretion coupling: Lessons from the 'stressed' adrenal medulla.

4区 医学 Q3 Biochemistry, Genetics and Molecular Biology Vitamins and Hormones Pub Date : 2024-01-01 Epub Date: 2023-06-08 DOI:10.1016/bs.vh.2023.05.004
Nathalie C Guérineau
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Abstract

Stress is part of our daily lives and good health in the modern world is offset by unhealthy lifestyle factors, including the deleterious consequences of stress and associated pathologies. Repeated and/or prolonged stress may disrupt the body homeostasis and thus threatens our lives. Adaptive processes that allow the organism to adapt to new environmental conditions and maintain its homeostasis are therefore crucial. The adrenal glands are major endocrine/neuroendocrine organs involved in the adaptive response of the body facing stressful situations. Upon stress episodes and in response to activation of the sympathetic nervous system, the first adrenal cells to be activated are the neuroendocrine chromaffin cells located in the medullary tissue of the adrenal gland. By releasing catecholamines (mainly epinephrine and to a lesser extent norepinephrine), adrenal chromaffin cells actively contribute to the development of adaptive mechanisms, in particular targeting the cardiovascular system and leading to appropriate adjustments of blood pressure and heart rate, as well as energy metabolism. Specifically, this chapter covers the current knowledge as to how the adrenal medullary tissue remodels in response to stress episodes, with special attention paid to chromaffin cell stimulus-secretion coupling. Adrenal stimulus-secretion coupling encompasses various elements taking place at both the molecular/cellular and tissular levels. Here, I focus on stress-driven changes in catecholamine biosynthesis, chromaffin cell excitability, synaptic neurotransmission and gap junctional communication. These signaling pathways undergo a collective and finely-tuned remodeling, contributing to appropriate catecholamine secretion and maintenance of body homeostasis in response to stress.

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刺激-分泌耦合的适应性重塑:受压 "肾上腺髓质的启示
压力是我们日常生活的一部分,现代社会的健康状况被不健康的生活方式因素所抵消,其中包括压力的有害后果和相关病症。反复和/或长期的压力可能会破坏机体的平衡,从而威胁到我们的生命。因此,让机体适应新的环境条件并保持平衡的适应过程至关重要。肾上腺是主要的内分泌/神经内分泌器官,参与机体面对压力时的适应性反应。在压力发作和交感神经系统激活时,首先被激活的肾上腺细胞是位于肾上腺髓质组织中的神经内分泌嗜铬细胞。肾上腺绒毛膜细胞通过释放儿茶酚胺(主要是肾上腺素,其次是去甲肾上腺素),积极促进适应机制的发展,特别是针对心血管系统,导致血压和心率以及能量代谢的适当调整。具体而言,本章将介绍肾上腺髓质组织在应对压力事件时如何重塑的现有知识,并特别关注绒毛膜促性腺激素细胞刺激-分泌耦合。肾上腺刺激-分泌耦合包括发生在分子/细胞和组织水平的各种因素。在这里,我将重点关注应激驱动的儿茶酚胺生物合成、绒毛膜细胞兴奋性、突触神经传递和间隙连接通信的变化。这些信号通路经历了集体的、微调的重塑,有助于儿茶酚胺的适当分泌,并在应激时维持机体平衡。
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来源期刊
Vitamins and Hormones
Vitamins and Hormones 医学-内分泌学与代谢
CiteScore
3.80
自引率
0.00%
发文量
66
审稿时长
6-12 weeks
期刊介绍: First published in 1943, Vitamins and Hormones is the longest-running serial published by Academic Press. In the early days of the serial, the subjects of vitamins and hormones were quite distinct. The Editorial Board now reflects expertise in the field of hormone action, vitamin action, X-ray crystal structure, physiology, and enzyme mechanisms. Vitamins and Hormones continues to publish cutting-edge reviews of interest to endocrinologists, biochemists, nutritionists, pharmacologists, cell biologists, and molecular biologists. Others interested in the structure and function of biologically active molecules like hormones and vitamins will, as always, turn to this series for comprehensive reviews by leading contributors to this and related disciplines.
期刊最新文献
3D organization of the rat adrenal medulla. A cholesterol-centric outlook on steroidogenesis. Adaptive remodeling of the stimulus-secretion coupling: Lessons from the 'stressed' adrenal medulla. Aging of the adrenal gland and its impact on the stress response. Angiotensin II-dependent aldosterone production in the adrenal cortex.
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