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Beauty is a Light in the Heart: The Transformative Potential ofOptogenetics for Clinical Applications in CardiovascularMedicine

机译:美丽是心灵之光:的转化潜力用于心血管临床应用的光遗传学药物

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摘要

Optogenetics is an exciting new technology in which viral gene or cell delivery is used to inscribe light sensitivity in excitable tissue to enable optical control of bioelectric behavior. Initial progress in the fledgling domain of cardiac optogenetics has included in vitro expression of various light-sensitive proteins in cell monolayers and transgenic animals to demonstrate an array of potentially useful applications, including light-based pacing, silencing of spontaneous activity, and spiral wave termination. In parallel to these developments, the cardiac modeling community has developed a versatile computational framework capable of realistically simulating optogenetics in biophysically detailed, patient-specific representations of the human heart, enabling the exploration of potential clinical applications in a predictive virtual platform. Towards the ultimate goal of assessing the feasibility and potential impact of optogenetics-based therapies in cardiovascular medicine, this review provides () a detailed synopsis of in vivo, in vitro, and in silico developments in the field and () a critical assessment of how existing clinical technology for gene/cell delivery and intra-cardiacillumination could be harnessed to achieve such lofty goals as light-basedarrhythmia termination.
机译:光遗传学是一项令人兴奋的新技术,其中病毒基因或细胞传递被用于在可激发组织中记录光敏性,从而实现对生物电行为的光学控制。心脏光遗传学羽翼未丰的领域的初步进展包括在细胞单层和转基因动物中体外表达各种光敏蛋白,以证明一系列潜在有用的应用,包括基于光的起搏,自发活性沉默和螺旋波终止。与这些发展并行的是,心脏建模社区已经开发了一种通用的计算框架,该框架能够现实地模拟人心脏的生物物理详细,患者特定表示形式的光遗传学,从而能够在预测性虚拟平台中探索潜在的临床应用。为了评估以光遗传学为基础的疗法在心血管医学中的可行性和潜在影响的最终目标,本综述提供了()该领域体内,体外和计算机领域发展的详细提要,以及(如何)进行关键性评估基因/细胞递送和心脏内的现有临床技术可以利用照明来实现基于光的崇高目标心律失常终止。

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