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评估心力衰竭及其他情况下心律失常的基础研究方法

Basic Research Approaches to Evaluate Cardiac Arrhythmia in Heart Failure and Beyond.

作者信息

Cumberland Max J, Riebel Leto L, Roy Ashwin, O'Shea Christopher, Holmes Andrew P, Denning Chris, Kirchhof Paulus, Rodriguez Blanca, Gehmlich Katja

机构信息

Institute of Cardiovascular Sciences, College of Medical and Dental Sciences, University of Birmingham, Birmingham, United Kingdom.

Department of Computer Science, University of Oxford, Oxford, United Kingdom.

出版信息

Front Physiol. 2022 Feb 7;13:806366. doi: 10.3389/fphys.2022.806366. eCollection 2022.

Abstract

Patients with heart failure often develop cardiac arrhythmias. The mechanisms and interrelations linking heart failure and arrhythmias are not fully understood. Historically, research into arrhythmias has been performed on affected individuals or (animal) models. The latter however is constrained by interspecies variation, demands to reduce animal experiments and cost. Recent developments in induced pluripotent stem cell technology and modelling have expanded the number of models available for the evaluation of heart failure and arrhythmia. An agnostic approach, combining the modalities discussed here, has the potential to improve our understanding for appraising the pathology and interactions between heart failure and arrhythmia and can provide robust and validated outcomes in a variety of research settings. This review discusses the state of the art models, methodologies and techniques used in the evaluation of heart failure and arrhythmia and will highlight the benefits of using them in combination. Special consideration is paid to assessing the pivotal role calcium handling has in the development of heart failure and arrhythmia.

摘要

心力衰竭患者常并发心律失常。心力衰竭与心律失常之间的机制及相互关系尚未完全明确。历史上,心律失常的研究多在患病个体或(动物)模型上进行。然而,后者受到种间差异、减少动物实验的需求及成本的限制。诱导多能干细胞技术和建模的最新进展增加了可用于评估心力衰竭和心律失常的模型数量。一种综合本文所讨论方法的无偏倚方法,有潜力增进我们对心力衰竭与心律失常之间病理及相互作用的理解,并能在各种研究环境中提供可靠且经过验证的结果。本综述讨论了用于评估心力衰竭和心律失常的最新模型、方法和技术,并将强调联合使用这些方法的益处。特别关注评估钙处理在心力衰竭和心律失常发生发展中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/faa0/8859441/15cd1095aae7/fphys-13-806366-g001.jpg

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