Glucagon-Like Peptide-1 Links Ingestion, Homeostasis, and the Heart.

IF 4.2 2区 医学 Q1 PHYSIOLOGY
Jean-Philippe Krieger, Derek Daniels, Shin Lee, Svetlana Mastitskaya, Wolfgang Langhans
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引用次数: 0

Abstract

Glucagon-like peptide-1 (GLP-1), a hormone released from enteroendocrine cells in the distal small and large intestines in response to nutrients and other stimuli, not only controls eating and insulin release, but is also involved in drinking control as well as renal and cardiovascular functions. Moreover, GLP-1 functions as a central nervous system peptide transmitter, produced by preproglucagon (PPG) neurons in the hindbrain. Intestinal GLP-1 inhibits eating by activating vagal sensory neurons directly, via GLP-1 receptors (GLP-1Rs), but presumably also indirectly, by triggering the release of serotonin from enterochromaffin cells. GLP-1 enhances glucose-dependent insulin release via a vago-vagal reflex and by direct action on beta cells. Finally, intestinal GLP-1 acts on the kidneys to modulate electrolyte and water movements, and on the heart, where it provides numerous benefits, including anti-inflammatory, antiatherogenic, and vasodilatory effects, as well as protection against ischemia/reperfusion injury and arrhythmias. Hindbrain PPG neurons receive multiple inputs and project to many GLP-1R-expressing brain areas involved in reward, autonomic functions, and stress. PPG neuron-derived GLP-1 is involved in the termination of large meals and is implicated in the inhibition of water intake. This review details GLP-1's roles in these interconnected systems, highlighting recent findings and unresolved issues, and integrating them to discuss the physiological and pathological relevance of endogenous GLP-1 in coordinating these functions. As eating poses significant threats to metabolic, fluid, and immune homeostasis, the body needs mechanisms to mitigate these challenges while sustaining essential nutrient intake. Endogenous GLP-1 plays a crucial role in this "ingestive homeostasis."

胰高血糖素样肽-1连接摄取、体内平衡和心脏。
胰高血糖素样肽-1 (Glucagon-like peptide-1, GLP-1)是远端小肠和大肠的肠内分泌细胞在营养物质和其他刺激下释放的一种激素,不仅控制饮食和胰岛素的释放,还参与控制饮酒、肾脏和心血管功能。此外,GLP-1作为中枢神经系统肽递质,由后脑的胰高血糖素前原(PPG)神经元产生。肠道GLP-1通过GLP-1受体(GLP-1Rs)直接激活迷走神经感觉神经元,但也可能通过触发肠嗜铬细胞释放血清素间接抑制进食。GLP-1通过迷走反射和直接作用于β细胞增强葡萄糖依赖性胰岛素释放。最后,肠道GLP-1作用于肾脏,调节电解质和水的运动,并作用于心脏,它提供了许多好处,包括抗炎、抗动脉粥样硬化和血管扩张作用,以及防止缺血/再灌注损伤和心律失常。后脑PPG神经元接受多种输入,并投射到许多表达glp - 1r的大脑区域,这些区域涉及奖励、自主神经功能和应激。PPG神经元衍生的GLP-1参与了大餐的终止,并与水摄入的抑制有关。这篇综述详细介绍了GLP-1在这些相互关联的系统中的作用,突出了最近的发现和未解决的问题,并整合它们来讨论内源性GLP-1在协调这些功能中的生理和病理相关性。由于进食对代谢、体液和免疫稳态构成重大威胁,身体需要机制来减轻这些挑战,同时维持必需的营养摄入。内源性GLP-1在这种“摄取体内平衡”中起着至关重要的作用。
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来源期刊
CiteScore
10.50
自引率
0.00%
发文量
38
审稿时长
6-12 weeks
期刊介绍: Comprehensive Physiology is the most authoritative and comprehensive collection of physiology information ever assembled, and uses the most powerful features of review journals and electronic reference works to cover the latest key developments in the field, through the most authoritative articles on the subjects covered. This makes Comprehensive Physiology a valued reference work on the evolving science of physiology for both researchers and clinicians. It also provides a useful teaching tool for instructors and an informative resource for medical students and other students in the life and health sciences.
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