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Modeling cardiac complexity: Advancements in myocardial models and analyticaltechniques for physiological investigation and therapeutic development invitro

机译:心脏复杂性建模:心肌模型和分析的进展生理学研究和治疗发展的技术体外

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摘要

Cardiomyopathies, heart failure, and arrhythmias or conduction blockages impact millions of patients worldwide and are associated with marked increases in sudden cardiac death, decline in the quality of life, and the induction of secondary pathologies. These pathologies stem from dysfunction in the contractile or conductive properties of the cardiomyocyte, which as a result is a focus of fundamental investigation, drug discovery and therapeutic development, and tissue engineering. All of these foci require in vitro myocardial models and experimental techniques to probe the physiological functions of the cardiomyocyte. In this review, we provide a detailed exploration of different cell models, disease modeling strategies, and tissue constructs used from basic to translational research. Furthermore, we highlight recent advancements in imaging, electrophysiology, metabolic measurements, and mechanical and contractile characterization modalities that are advancing our understanding of cardiomyocyte physiology. With this review, we aim to both provide a biological framework for engineers contributing to the field and demonstrate the technical basis and limitations underlying physiological measurement modalities for biologists attempting to take advantage of these state-of-the-art techniques.
机译:心肌病,心力衰竭和心律不齐或传导阻滞影响全球数百万患者,并与心脏猝死,生活质量下降和继发性继发性疾病的明显增加有关。这些病理源于心肌细胞的收缩或传导特性的机能障碍,其结果是基础研究,药物发现和治疗开发以及组织工程学的重点。所有这些病灶都需要体外心肌模型和实验技术来探查心肌细胞的生理功能。在这篇综述中,我们提供了从基础研究到转化研究的不同细胞模型,疾病建模策略和组织结构的详细探索。此外,我们重点介绍了影像学,电生理学,代谢测量以及机械和收缩特性表征方法方面的最新进展,这些进展促进了我们对心肌细胞生理学的理解。通过这次审查,我们旨在为为该领域做出贡献的工程师提供一个生物学框架,并为试图利用这些最新技术的生物学家展示生理测量方法的技术基础和局限性。

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