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见微知著:斑马鱼在心脏光遗传学研究中的应用

Seeing the Light: The Use of Zebrafish for Optogenetic Studies of the Heart.

作者信息

Baillie Jonathan S, Stoyek Matthew R, Quinn T Alexander

机构信息

Department of Physiology and Biophysics, Dalhousie University, Halifax, NS, Canada.

School of Biomedical Engineering, Dalhousie University, Halifax, NS, Canada.

出版信息

Front Physiol. 2021 Dec 23;12:748570. doi: 10.3389/fphys.2021.748570. eCollection 2021.

Abstract

Optogenetics, involving the optical measurement and manipulation of cellular activity with genetically encoded light-sensitive proteins ("reporters" and "actuators"), is a powerful experimental technique for probing (patho-)physiological function. Originally developed as a tool for neuroscience, it has now been utilized in cardiac research for over a decade, providing novel insight into the electrophysiology of the healthy and diseased heart. Among the pioneering cardiac applications of optogenetic actuators were studies in zebrafish, which first demonstrated their use for precise spatiotemporal control of cardiac activity. Zebrafish were also adopted early as an experimental model for the use of optogenetic reporters, including genetically encoded voltage- and calcium-sensitive indicators. Beyond optogenetic studies, zebrafish are becoming an increasingly important tool for cardiac research, as they combine many of the advantages of integrative and reduced experimental models. The zebrafish has striking genetic and functional cardiac similarities to that of mammals, its genome is fully sequenced and can be modified using standard techniques, it has been used to recapitulate a variety of cardiac diseases, and it allows for high-throughput investigations. For optogenetic studies, zebrafish provide additional advantages, as the whole zebrafish heart can be visualized and interrogated in the transparent, externally developing embryo, and the relatively small adult heart allows for cell-specific observation and control not possible in mammals. With the advent of increasingly sophisticated fluorescence imaging approaches and methods for spatially-resolved light stimulation in the heart, the zebrafish represents an experimental model with unrealized potential for cardiac optogenetic studies. In this review we summarize the use of zebrafish for optogenetic investigations in the heart, highlighting their specific advantages and limitations, and their potential for future cardiac research.

摘要

光遗传学涉及利用基因编码的光敏蛋白(“报告蛋白”和“效应蛋白”)对细胞活动进行光学测量和操纵,是一种用于探究(病理-)生理功能的强大实验技术。它最初是作为神经科学的一种工具而开发的,现在已在心脏研究中应用了十多年,为健康和患病心脏的电生理学提供了新的见解。光遗传学效应蛋白在心脏领域的开创性应用包括对斑马鱼的研究,该研究首次证明了它们可用于精确时空控制心脏活动。斑马鱼也很早就被用作光遗传学报告蛋白的实验模型,包括基因编码的电压和钙敏感指示剂。除了光遗传学研究,斑马鱼正成为心脏研究中越来越重要的工具,因为它们兼具综合实验模型和简化实验模型的诸多优点。斑马鱼在遗传和心脏功能方面与哺乳动物有显著相似之处,其基因组已完全测序,可使用标准技术进行修饰,已被用于重现多种心脏疾病,并且适合进行高通量研究。对于光遗传学研究,斑马鱼还有其他优势,因为在透明的体外发育胚胎中可以可视化并研究整个斑马鱼心脏,而且相对较小的成体心脏使得在哺乳动物中无法实现的细胞特异性观察和控制成为可能。随着越来越复杂的荧光成像方法和心脏空间分辨光刺激方法的出现,斑马鱼代表了一种在心脏光遗传学研究中具有尚未实现潜力的实验模型。在这篇综述中,我们总结了斑马鱼在心脏光遗传学研究中的应用,强调了它们的特定优势和局限性,以及它们在未来心脏研究中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff4f/8733579/020da5bc2fa1/fphys-12-748570-g0001.jpg

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