【2h】

Calcium and Arrhythmogenesis

机译:钙与心律失常

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摘要

Triggered activity in cardiac muscle and intracellular Ca2+ have been linked in the past. However, today not only are there a number of cellular proteins that show clear Ca2+ dependence but also there are a number of arrhythmias whose mechanism appears to be linked to Ca2+-dependent processes. Thus we present a systematic review of the mechanisms of Ca2+ transport (forward excitation-contraction coupling) in the ventricular cell as well as what is known for other cardiac cell types. Second, we review the molecular nature of the proteins that are involved in this process as well as the functional consequences of both normal and abnormal Ca2+ cycling (e.g., Ca2+ waves). Finally, we review what we understand to be the role of Ca2+ cycling in various forms of arrhythmias, that is, those associated with inherited mutations and those that are acquired and resulting from reentrant excitation and/or abnormal impulse generation (e.g., triggered activity). Further solving the nature of these intricate and dynamic interactions promises to be an important area of research for a better recognition and understanding of the nature of Ca2+ and arrhythmias. Our solutions will provide a more complete understanding of the molecular basis for the targeted control of cellular calcium in the treatment and prevention of such.
机译:过去已经将心肌中触发的活动与细胞内Ca 2 + 联系在一起。然而,今天,不仅有许多细胞蛋白显示出明显的Ca 2 + 依赖性,而且还有许多心律不齐的机制似乎与Ca 2 + 依赖的过程。因此,我们对心室细胞中Ca 2 + 的转运机制(正激-收缩偶联)以及其他心脏细胞类型的机制进行了系统的综述。其次,我们回顾了参与此过程的蛋白质的分子性质,以及正常和异常Ca 2 + 循环(例如Ca 2 + 波浪)。最后,我们回顾一下我们理解的是Ca 2 + 循环在各种形式的心律失常中的作用,即与遗传突变相关的突变以及因折返激发和/或折返获得的突变异常冲动的产生(例如,触发的活动)。进一步解决这些复杂而动态的相互作用的本质有望成为更好地认识和理解Ca 2 + 和心律不齐的本质的重要研究领域。我们的解决方案将提供对细胞钙的靶向控制在治疗和预防中的分子基础的更完整理解。

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