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心脏电生理学研究中的技术进展——兔模型的作用。

Technical advances in studying cardiac electrophysiology - Role of rabbit models.

作者信息

Kang C, Brennan J A, Kuzmiak-Glancy S, Garrott K E, Kay M W, Efimov I R

机构信息

Department of Biomedical Engineering, The George Washington University, 800 22nd Street NW, Suite 5000, Washington DC, 20052, USA.

Department of Biomedical Engineering, The George Washington University, 800 22nd Street NW, Suite 5000, Washington DC, 20052, USA.

出版信息

Prog Biophys Mol Biol. 2016 Jul;121(2):97-109. doi: 10.1016/j.pbiomolbio.2016.05.006. Epub 2016 May 19.

Abstract

Cardiovascular research has made a major contribution to an unprecedented 10 year increase in life expectancy during the last 50 years: most of this increase due to a decline in mortality from heart disease and stroke. The majority of the basic cardiovascular science discoveries, which have led to this impressive extension of human life, came from investigations conducted in various small and large animal models, ranging from mouse to pig. The small animal models are currently popular because they are amenable to genetic engineering and are relatively inexpensive. The large animal models are favored at the translational stage of the investigation, as they are anatomically and physiologically more proximal to humans, and can be implanted with various devices; however, they are expensive and less amenable to genetic manipulations. With the advent of CRISPR genetic engineering technology and the advances in implantable bioelectronics, the large animal models will continue to advance. The rabbit model is particularly poised to become one of the most popular among the animal models that recapitulate human heart diseases. Here we review an array of the rabbit models of atrial and ventricular arrhythmias, as well as a range of the imaging and device technologies enabling these investigations.

摘要

在过去50年里,心血管研究为预期寿命前所未有的10年增长做出了重大贡献:这一增长大部分归因于心脏病和中风死亡率的下降。导致人类寿命显著延长的大多数基础心血管科学发现,都来自于在从小鼠到猪等各种大小动物模型上进行的研究。目前,小型动物模型很受欢迎,因为它们适合基因工程操作且成本相对较低。大型动物模型在研究的转化阶段更受青睐,因为它们在解剖学和生理学上与人类更为接近,并且可以植入各种装置;然而,它们成本高昂且不太适合基因操作。随着CRISPR基因工程技术的出现和可植入生物电子学的进步,大型动物模型将不断发展。在模拟人类心脏病的动物模型中,兔子模型尤其有望成为最受欢迎的模型之一。在此,我们综述了一系列心房和心室心律失常的兔子模型,以及一系列有助于这些研究的成像和装置技术。

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