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跨物种心室僵硬度的比较分析。

Comparative analysis of ventricular stiffness across species.

作者信息

Usui Yuu, Hanashima Akira, Hashimoto Ken, Kimoto Misaki, Ohira Momoko, Mohri Satoshi

机构信息

First Department of Physiology, Kawasaki Medical School, Kurashiki, Okayama, Japan.

出版信息

Physiol Rep. 2024 Apr;12(8):e16013. doi: 10.14814/phy2.16013.

Abstract

Investigating ventricular diastolic properties is crucial for understanding the physiological cardiac functions in organisms and unraveling the pathological mechanisms of cardiovascular disorders. Ventricular stiffness, a fundamental parameter that defines ventricular diastolic functions in chordates, is typically analyzed using the end-diastolic pressure-volume relationship (EDPVR). However, comparing ventricular stiffness accurately across chambers of varying maximum volume capacities has been a long-standing challenge. As one of the solutions to this problem, we propose calculating a relative ventricular stiffness index by applying an exponential approximation formula to the EDPVR plot data of the relationship between ventricular pressure and values of normalized ventricular volume by the ventricular weight. This article reviews the potential, utility, and limitations of using normalized EDPVR analysis in recent studies. Herein, we measured and ranked ventricular stiffness in differently sized and shaped chambers using ex vivo ventricular pressure-volume analysis data from four animals: Wistar rats, red-eared slider turtles, masu salmon, and cherry salmon. Furthermore, we have discussed the mechanical effects of intracellular and extracellular viscoelastic components, Titin (Connectin) filaments, collagens, physiological sarcomere length, and other factors that govern ventricular stiffness. Our review provides insights into the comparison of ventricular stiffness in different-sized ventricles between heterologous and homologous species, including non-model organisms.

摘要

研究心室舒张特性对于理解生物体中心脏的生理功能以及揭示心血管疾病的病理机制至关重要。心室僵硬度是定义脊索动物心室舒张功能的一个基本参数,通常使用舒张末期压力-容积关系(EDPVR)进行分析。然而,准确比较不同最大容积能力心室之间的心室僵硬度一直是一个长期存在的挑战。作为解决这个问题的方法之一,我们建议通过将指数近似公式应用于心室压力与心室重量归一化心室容积值之间关系的EDPVR图数据来计算相对心室僵硬度指数。本文回顾了近期研究中使用归一化EDPVR分析的潜力、效用和局限性。在此,我们使用来自四种动物(Wistar大鼠、红耳滑龟、马苏大麻哈鱼和樱鳟)的离体心室压力-容积分析数据,测量并对不同大小和形状的心室内的心室僵硬度进行了排名。此外,我们还讨论了细胞内和细胞外粘弹性成分、肌联蛋白(连接蛋白)丝、胶原蛋白、生理肌节长度以及其他控制心室僵硬度的因素的力学效应。我们的综述为比较包括非模式生物在内的异源和同源物种不同大小心室之间的心室僵硬度提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d182/11033294/2355ff9bce80/PHY2-12-e16013-g003.jpg

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