Neural innervation in adipose tissue, gut, pancreas, and liver

Mengxue Sun, Yongwen Wan, Mengjie Shi, Z. Meng, W. Zeng
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Abstract

Efficient communication between the brain and peripheral organs is indispensable for regulating physiological function and maintaining energy homeostasis. The peripheral nervous system (PNS) in vertebrates, consisting of the autonomic and somatic nervous systems, bridges the peripheral organs and the central nervous system (CNS). Metabolic signals are processed by both vagal sensory nerves and somatosensory nerves. The CNS receives sensory inputs via ascending nerves, serves as the coordination and integration center, and subsequently controls internal organs and glands via descending nerves. The autonomic nervous system consists of sympathetic and parasympathetic branches that project peripheral nerves into various anatomical locations to regulate the energy balance. Sympathetic and parasympathetic nerves typically control the reflexive and involuntary functions in organs. In this review article, we outline the innervation of adipose tissue, gut, pancreas, and liver, to illustrate the neurobiological basis of central–peripheral interactions. We emphasize the importance of understanding the functional atlas of neural control of energy metabolism, and more importantly, provide potential avenues for further research in this area.
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脂肪组织、肠道、胰腺和肝脏的神经支配
大脑和周围器官之间的有效沟通对于调节生理功能和维持能量稳态是必不可少的。脊椎动物的外周神经系统(PNS)由自主神经系统和躯体神经系统组成,是连接外周器官和中枢神经系统的桥梁。代谢信号由迷走感觉神经和体感觉神经共同处理。中枢神经系统通过上行神经接受感觉输入,作为协调和整合中枢,随后通过下行神经控制内部器官和腺体。自主神经系统由交感神经和副交感神经分支组成,它们将周围神经投射到不同的解剖位置,以调节能量平衡。交感神经和副交感神经通常控制器官的反射和不随意功能。在这篇综述文章中,我们概述了脂肪组织、肠道、胰腺和肝脏的神经支配,以说明中枢-外周相互作用的神经生物学基础。我们强调了解能量代谢神经控制功能图谱的重要性,更重要的是为该领域的进一步研究提供了潜在的途径。
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