Jaimes Rafael, Walton Richard D, Pasdois Philippe, Bernus Olivier, Efimov Igor R, Kay Matthew W
Department of Biomedical Engineering, The George Washington University. Washington, District of Columbia;
Université de Bordeaux, Centre de Recherche Cardio-Thoracique de Bordeaux U1045, Bordeaux, France; Institut National de la Santé et de la Recherche Médicale, Centre de Recherche Cardio-Thoracique de Bordeaux U1045, Bordeaux, France; and L'Institut de Rythmologie et Modélisation Cardiaque LIRYC, Université de Bordeaux, Bordeaux, France.
Am J Physiol Heart Circ Physiol. 2016 Jun 1;310(11):H1388-401. doi: 10.1152/ajpheart.00665.2015. Epub 2016 Mar 25.
Optical mapping of Ca(2+)-sensitive fluorescence probes has become an extremely useful approach and adopted by many cardiovascular research laboratories to study a spectrum of myocardial physiology and disease conditions. Optical mapping data are often displayed as detailed pseudocolor images, providing unique insight for interpreting mechanisms of ectopic activity, action potential and Ca(2+) transient alternans, tachycardia, and fibrillation. Ca(2+)-sensitive fluorescent probes and optical mapping systems continue to evolve in the ongoing effort to improve therapies that ease the growing worldwide burden of cardiovascular disease. In this technical review we provide an updated overview of conventional approaches for optical mapping of Cai (2+) within intact myocardium. In doing so, a brief history of Cai (2+) probes is provided, and nonratiometric and ratiometric Ca(2+) probes are discussed, including probes for imaging sarcoplasmic reticulum Ca(2+) and probes compatible with potentiometric dyes for dual optical mapping. Typical measurements derived from optical Cai (2+) signals are explained, and the analytics used to compute them are presented. Last, recent studies using Cai (2+) optical mapping to study arrhythmias, heart failure, and metabolic perturbations are summarized.
钙(Ca2+)敏感荧光探针的光学映射已成为一种极其有用的方法,并被许多心血管研究实验室采用,以研究一系列心肌生理学和疾病状况。光学映射数据通常显示为详细的伪彩色图像,为解释异位活动、动作电位和钙(Ca2+)瞬变交替、心动过速和颤动的机制提供了独特的见解。钙(Ca2+)敏感荧光探针和光学映射系统在持续努力改进缓解全球日益增长的心血管疾病负担的治疗方法中不断发展。在本技术综述中,我们提供了完整心肌内钙(Ca2+)光学映射传统方法的最新概述。在此过程中,我们提供了钙(Ca2+)探针的简要历史,并讨论了非比率和比率钙(Ca2+)探针,包括用于肌浆网钙(Ca2+)成像的探针以及与电位染料兼容用于双光学映射的探针。解释了从钙(Ca2+)光学信号得出的典型测量值,并介绍了用于计算这些测量值的分析方法。最后,总结了最近使用钙(Ca2+)光学映射研究心律失常、心力衰竭和代谢紊乱的研究。