Department of Medicine, Division of Cardiology, University of California, San Diego, CA 92093-0613J, USA.
Differentiation. 2012 Jul;84(1):4-16. doi: 10.1016/j.diff.2012.05.005. Epub 2012 Jun 15.
The zebrafish has become an ideal vertebrate animal system for investigating cardiac development due to its genetic tractability, external fertilization, early optical clarity and ability to survive without a functional cardiovascular system during development. In particular, recent advances in imaging techniques and the creation of zebrafish transgenics now permit the in vivo analysis of the dynamic cellular events that transpire during cardiac morphogenesis. As a result, the combination of these salient features provides detailed insight as to how specific genes may influence cardiac development at the cellular level. In this review, we will highlight how the zebrafish has been utilized to elucidate not only the underlying mechanisms of cardiac development and human congenital heart diseases (CHDs), but also potential pathways that may modulate cardiac regeneration. Thus, we have organized this review based on the major categories of CHDs-structural heart, functional heart, and vascular/great vessel defects, and will conclude with how the zebrafish may be further used to contribute to our understanding of specific human CHDs in the future.
斑马鱼已成为研究心脏发育的理想脊椎动物系统,因为它具有遗传易操作性、体外受精、早期光学透明度以及在发育过程中无需功能性心血管系统即可存活的能力。特别是,成像技术的最新进展和斑马鱼转基因的创建现在允许对心脏形态发生过程中发生的动态细胞事件进行体内分析。因此,这些显着特征的结合提供了有关特定基因如何在细胞水平上影响心脏发育的详细见解。在这篇综述中,我们将重点介绍斑马鱼如何不仅被用于阐明心脏发育和人类先天性心脏病 (CHD) 的潜在机制,还用于研究可能调节心脏再生的潜在途径。因此,我们根据 CHD 的主要类别——结构性心脏、功能性心脏和血管/大血管缺陷进行了组织,最后将讨论斑马鱼将来如何进一步用于帮助我们了解特定的人类 CHD。