Department of Biology, Johns Hopkins University, Baltimore, MD, USA.
Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, USA.
Nat Rev Neurosci. 2021 Nov;22(11):685-702. doi: 10.1038/s41583-021-00523-y. Epub 2021 Oct 1.
The sympathetic nervous system prepares the body for 'fight or flight' responses and maintains homeostasis during daily activities such as exercise, eating a meal or regulation of body temperature. Sympathetic regulation of bodily functions requires the establishment and refinement of anatomically and functionally precise connections between postganglionic sympathetic neurons and peripheral organs distributed widely throughout the body. Mechanistic studies of key events in the formation of postganglionic sympathetic neurons during embryonic and early postnatal life, including axon growth, target innervation, neuron survival, and dendrite growth and synapse formation, have advanced the understanding of how neuronal development is shaped by interactions with peripheral tissues and organs. Recent progress has also been made in identifying how the cellular and molecular diversity of sympathetic neurons is established to meet the functional demands of peripheral organs. In this Review, we summarize current knowledge of signalling pathways underlying the development of the sympathetic nervous system. These findings have implications for unravelling the contribution of sympathetic dysfunction stemming, in part, from developmental perturbations to the pathophysiology of peripheral neuropathies and cardiovascular and metabolic disorders.
交感神经系统为“战斗或逃跑”反应做准备,并在日常活动中维持体内平衡,如运动、进食或体温调节。交感神经对身体功能的调节需要在后交感神经元和分布在全身的外周器官之间建立和精细调节解剖学和功能上精确的连接。对胚胎期和出生后早期形成节后交感神经元的关键事件的机制研究,包括轴突生长、靶神经支配、神经元存活以及树突生长和突触形成,增进了对神经元发育如何受与外周组织和器官相互作用影响的理解。最近在确定如何建立交感神经元的细胞和分子多样性以满足外周器官的功能需求方面也取得了进展。在这篇综述中,我们总结了交感神经系统发育的信号通路的现有知识。这些发现对于揭示部分源自发育扰动的交感神经功能障碍对周围神经病变以及心血管和代谢紊乱的病理生理学的贡献具有重要意义。