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解析外周交感神经回路

Untangling Peripheral Sympathetic Neurocircuits.

作者信息

Clyburn Courtney, Andresen Michael C, Ingram Susan L, Habecker Beth A

机构信息

Department of Chemical Physiology and Biochemistry, Oregon Health and Science University, Portland, OR, United States.

Department of Neurological Surgery, Oregon Health and Science University, Portland, OR, United States.

出版信息

Front Cardiovasc Med. 2022 Feb 10;9:842656. doi: 10.3389/fcvm.2022.842656. eCollection 2022.

Abstract

The sympathetic nervous system plays a critical role in regulating many autonomic functions, including cardiac rhythm. The postganglionic neurons in the sympathetic chain ganglia are essential components that relay sympathetic signals to target tissues and disruption of their activity leads to poor health outcomes. Despite this importance, the neurocircuitry within sympathetic ganglia is poorly understood. Canonically, postganglionic sympathetic neurons are thought to simply be activated by monosynaptic inputs from preganglionic cholinergic neurons of the intermediolateral cell columns of the spinal cord. Early electrophysiological studies of sympathetic ganglia where the peripheral nerve trunks were electrically stimulated identified excitatory cholinergic synaptic events in addition to retrograde action potentials, leading some to speculate that excitatory collateral projections are present. However, this seemed unlikely since sympathetic postganglionic neurons were known to synthesize and release norepinephrine and expression of dual neurochemical phenotypes had not been well recognized. studies clearly established the capacity of cultured sympathetic neurons to express and release acetylcholine norepinephrine throughout development and even in pathophysiological conditions. Given this insight, we believe that the canonical view of ganglionic transmission needs to be reevaluated and may provide a mechanistic understanding of autonomic imbalance in disease. Further studies likely will require genetic models manipulating neurochemical phenotypes within sympathetic ganglia to resolve the function of cholinergic collateral projections between postganglionic neurons. In this perspective article, we will discuss the evidence for collateral projections in sympathetic ganglia, determine if current laboratory techniques could address these questions, and discuss potential obstacles and caveats.

摘要

交感神经系统在调节包括心律在内的许多自主功能中起着关键作用。交感神经链神经节中的节后神经元是将交感神经信号传递到靶组织的重要组成部分,其活动的破坏会导致不良的健康后果。尽管其很重要,但交感神经节内的神经回路却鲜为人知。传统上,节后交感神经元被认为只是由脊髓中间外侧细胞柱的节前胆碱能神经元的单突触输入激活。早期对交感神经节的电生理研究,通过电刺激外周神经干,除了逆行动作电位外,还发现了兴奋性胆碱能突触事件,这使得一些人推测存在兴奋性侧支投射。然而,这似乎不太可能,因为已知交感节后神经元合成并释放去甲肾上腺素,而且双神经化学表型的表达尚未得到充分认识。研究清楚地证实了培养的交感神经元在整个发育过程中甚至在病理生理条件下表达和释放乙酰胆碱和去甲肾上腺素的能力。基于这一见解,我们认为神经节传递的传统观点需要重新评估,这可能为疾病中自主神经失衡提供机制上的理解。进一步的研究可能需要利用遗传模型来操纵交感神经节内的神经化学表型,以解析节后神经元之间胆碱能侧支投射的功能。在这篇观点文章中,我们将讨论交感神经节中侧支投射的证据,确定当前的实验室技术是否能够解决这些问题,并讨论潜在的障碍和注意事项。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08fd/8866570/050b68f4f100/fcvm-09-842656-g0001.jpg

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