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转基因小鼠的心脏生理学

Cardiac physiology in transgenic mice.

作者信息

James J F, Hewett T E, Robbins J

机构信息

Children's Hospital Research Foundation, Department of Pediatrics, Cincinnati, Ohio 45229-3039, USA.

出版信息

Circ Res. 1998 Mar 9;82(4):407-15. doi: 10.1161/01.res.82.4.407.

Abstract

By use of gene targeting and/or transgenesis, it is now possible to make defined changes in genes whose functions underlie mammalian cardiovascular function. Because of technical and economic considerations, these experiments are largely confined to the mouse. Genetic modification of the loci responsible for aspects of cardiac development, differentiation, and function via gene targeting, as well as modulation of the cardiac protein complement using transgenesis, has begun to provide mouse models of cardiac hypertrophy, dilated cardiomyopathy, and hypertrophic cardiomyopathies. In order to use these animal models fully and explore their phenotypes at the whole organ and whole animal levels, the extension of cardiovascular physiological methodologies to the mouse is imperative. Techniques for exploring aspects of cardiovascular function are well developed for larger animal models, but their modification for the small size of the mouse heart and for the animal's rapid cardiac cycle has proven to be a formidable challenge, requiring the combined efforts of the molecular biology, physiology, and cardiology communities. We review here the ability of present-day technology to obtain reproducible data on murine cardiac function at the whole organ and animal levels.

摘要

通过基因靶向和/或转基因技术,现在有可能对其功能构成哺乳动物心血管功能基础的基因进行明确的改变。由于技术和经济方面的考虑,这些实验主要局限于小鼠。通过基因靶向对负责心脏发育、分化和功能方面的基因座进行遗传修饰,以及利用转基因调节心脏蛋白质组成,已开始提供心脏肥大、扩张型心肌病和肥厚型心肌病的小鼠模型。为了充分利用这些动物模型并在整个器官和整个动物水平上探索它们的表型,将心血管生理学方法扩展到小鼠身上势在必行。探索心血管功能方面的技术在较大动物模型中已得到很好的发展,但事实证明,将其修改以适应小鼠心脏的小尺寸和动物快速的心动周期是一项艰巨的挑战,需要分子生物学、生理学和心脏病学界的共同努力。我们在此回顾当今技术在整个器官和动物水平上获取关于小鼠心脏功能的可重复数据的能力。

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