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调节微观神经-心脏相互作用的协调性可使心跳演奏出无数种曲风。

Tuning the Consonance of Microscopic Neuro-Cardiac Interactions Allows the Heart Beats to Play Countless Genres.

作者信息

Franzoso Mauro, Dokshokova Lolita, Vitiello Libero, Zaglia Tania, Mongillo Marco

机构信息

Department of Biomedical Sciences, University of Padova, Padova, Italy.

Department of Biology, University of Padova, Padova, Italy.

出版信息

Front Physiol. 2022 Feb 22;13:841740. doi: 10.3389/fphys.2022.841740. eCollection 2022.

Abstract

Different from skeletal muscle, the heart autonomously generates rhythmic contraction independently from neuronal inputs. However, speed and strength of the heartbeats are continuously modulated by environmental, physical or emotional inputs, delivered by cardiac innervating sympathetic neurons, which tune cardiomyocyte (CM) function, through activation of β-adrenoceptors (β-ARs). Given the centrality of such mechanism in heart regulation, β-AR signaling has been subject of intense research, which has reconciled the molecular details of the transduction pathway and the fine architecture of cAMP signaling in subcellular nanodomains, with its final effects on CM function. The importance of mechanisms keeping the elements of β-AR/cAMP signaling in good order emerges in pathology, when the loss of proper organization of the transduction pathway leads to detuned β-AR/cAMP signaling, with detrimental consequences on CM function. Despite the compelling advancements in decoding cardiac β-AR/cAMP signaling, most discoveries on the subject were obtained in isolated cells, somehow neglecting that complexity may encompass the means in which receptors are activated in the intact heart. Here, we outline a set of data indicating that, in the context of the whole myocardium, the heart orchestra (CMs) is directed by a closely interacting and continuously attentive conductor, represented by SNs. After a roundup of literature on CM cAMP regulation, we focus on the unexpected complexity and roles of cardiac sympathetic innervation, and present the recently discovered Neuro-Cardiac Junction, as the election site of "SN-CM" interaction. We further discuss how neuro-cardiac communication is based on the combination of extra- and intra-cellular signaling micro/nano-domains, implicating neuronal neurotransmitter exocytosis, β-ARs and elements of cAMP homeostasis in CMs, and speculate on how their dysregulation may reflect on dysfunctional neurogenic control of the heart in pathology.

摘要

与骨骼肌不同,心脏能够独立于神经输入自主产生节律性收缩。然而,心跳的速度和强度会受到环境、身体或情绪输入的持续调节,这些输入由支配心脏的交感神经元传递,通过激活β-肾上腺素能受体(β-ARs)来调节心肌细胞(CM)的功能。鉴于这种机制在心脏调节中的核心地位,β-AR信号传导一直是深入研究的主题,该研究已经梳理了转导途径的分子细节以及亚细胞纳米域中cAMP信号传导的精细结构,及其对CM功能的最终影响。当转导途径的正常组织丧失导致β-AR/cAMP信号失调,进而对CM功能产生有害影响时,保持β-AR/cAMP信号元件正常有序的机制在病理学中的重要性就显现出来了。尽管在解码心脏β-AR/cAMP信号传导方面取得了令人瞩目的进展,但关于该主题的大多数发现都是在分离的细胞中获得的,在某种程度上忽略了完整心脏中受体激活方式的复杂性。在这里,我们概述了一组数据,表明在整个心肌的背景下,心脏管弦乐队(CMs)由一个紧密相互作用且持续关注的指挥引导,这个指挥由交感神经(SNs)代表。在综述了关于CM cAMP调节的文献后,我们关注心脏交感神经支配的意外复杂性和作用,并介绍最近发现的神经-心脏连接,作为“SN-CM”相互作用的选择位点。我们进一步讨论神经-心脏通信如何基于细胞外和细胞内信号微/纳米域的组合,涉及神经元神经递质的胞吐作用、β-ARs以及CM中cAMP稳态的元件,并推测它们的失调如何在病理学中反映为心脏神经源性控制功能障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8713/8902305/e3870eae42c6/fphys-13-841740-g001.jpg

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