The Role of the Axonal Guidance Cue Semaphorin 3A in Innervation of the Postnatal Heart in Health and Disease

IF 5.8 2区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS
Claire J. Koppel MD , Charlotte M.S. De Henau MSc , Dianne Vreeken PhD , Marco C. DeRuiter PhD , Monique R.M. Jongbloed MD, PhD , Janine M. van Gils PhD
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Abstract

During cardiac development, the heart is innervated by the autonomous nervous system. After development, neurons of the autonomic nervous system have limited capacity for growth and regeneration. However, in recent decades, it has become clear that cardiac nerves can regenerate after cardiac damage. Excessive reinnervation, so-called sympathetic hyperinnervation, may render patients vulnerable to ventricular arrhythmias and heart failure. Several studies have investigated axonal guidance cues as mediators of cardiac innervation. Axonal guidance cues direct neuronal growth of the axon and play a significant role in the regeneration and remodelling of cardiac autonomic innervation after cardiac damage. This review focusses on the current literature regarding the axonal guidance cue group of semaphorins and their function in the healthy and diseased postnatal heart. In view of cardiac innervation, most studies have focussed on semaphorin 3A (SEMA3A), whereas less is known about the function of the other semaphorin classes. SEMA3A is a neuronal repellent and is associated with a decrease in the density of sympathetic neurons in the heart. Its decline in expression after myocardial infarction plays a role in the development of sympathetic hyperinnervation and the subsequent increased risk of ventricular arrhythmias. In congestive heart failure, the opposite occurs: an increase in SEMA3A expression underlies decreased nerve density that may also serve as a substrate for ventricular arrhythmias. Although the literature on their role in cardiac innervation is still relatively scarce, semaphorins, especially SEMA3A, seem worthwhile to consider when exploring options to modulate pathologic innervation patterns in cardiovascular disease.
轴突引导线索Semaphorin3A在出生后心脏健康和疾病中的神经支配作用。
在心脏发育过程中,心脏受自主神经系统支配。发育后,自主神经系统神经元的生长和再生能力有限。然而,在过去的几十年里,人们已经清楚地认识到心脏损伤后心脏神经可以再生。过度的再神经支配,即所谓的交感神经支配过度,可能使患者容易发生室性心律失常和心力衰竭。一些研究已经研究了轴突引导信号作为心脏神经支配的介质。轴突引导信号直接指导轴突神经元的生长,在心脏损伤后心脏自主神经的再生和重塑中起重要作用。本文综述了目前关于轴突引导提示信号素组及其在健康和患病出生后心脏中的作用的文献。鉴于心脏神经支配,大多数研究集中在信号蛋白3A (SEMA3A)上,而对其他信号蛋白类的功能知之甚少。SEMA3A是一种神经元排斥剂,与心脏交感神经元密度降低有关。它在心肌梗死后表达的下降在交感神经支配的发展和随后室性心律失常的风险增加中起作用。在充血性心力衰竭中,情况正好相反:SEMA3A表达的增加是神经密度降低的基础,这也可能是室性心律失常的基础。尽管关于信号蛋白在心脏神经支配中的作用的文献仍然相对较少,但在探索心血管疾病中调节病理神经支配模式的选择时,信号蛋白,特别是SEMA3A似乎是相关的候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Canadian Journal of Cardiology
Canadian Journal of Cardiology 医学-心血管系统
CiteScore
9.20
自引率
8.10%
发文量
546
审稿时长
32 days
期刊介绍: The Canadian Journal of Cardiology (CJC) is the official journal of the Canadian Cardiovascular Society (CCS). The CJC is a vehicle for the international dissemination of new knowledge in cardiology and cardiovascular science, particularly serving as the major venue for Canadian cardiovascular medicine.
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