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诱导多能干细胞:从发育生物学到再生医学。

Induced pluripotent stem cells: developmental biology to regenerative medicine.

机构信息

Marriott Heart Disease Research Program, Division of Cardiovascular Diseases, Department of Medicine, Mayo Clinic, 200 First Street SW, Rochester, MN 55905, USA.

出版信息

Nat Rev Cardiol. 2010 Dec;7(12):700-10. doi: 10.1038/nrcardio.2010.159. Epub 2010 Oct 19.

Abstract

Nuclear reprogramming of somatic cells with ectopic stemness factors to bioengineer pluripotent autologous stem cells signals a new era in regenerative medicine. The study of developmental biology has provided a roadmap for cardiac differentiation from embryonic tissue formation to adult heart muscle rejuvenation. Understanding the molecular mechanisms of stem-cell-derived cardiogenesis enables the reproducible generation, isolation, and monitoring of progenitors that have the capacity to recapitulate embryogenesis and differentiate into mature cardiac tissue. With the advent of induced pluripotent stem (iPS) cell technology, patient-specific stem cells provide a reference point to systematically decipher cardiogenic differentiation through discrete stages of development. Interrogation of iPS cells and their progeny from selected cohorts of patients is an innovative approach towards uncovering the molecular mechanisms of disease. Thus, the principles of cardiogenesis can now be applied to regenerative medicine in order to optimize personalized therapeutics, diagnostics, and discovery-based science for the development of novel clinical applications.

摘要

体细胞通过异位干性因子的核重编程来生物工程化多能自体干细胞,标志着再生医学的新时代。发育生物学的研究为心脏从胚胎组织形成到成年心肌再生的分化提供了路线图。了解干细胞源性心脏发生的分子机制使能够重复生成、分离和监测具有再现胚胎发生和分化为成熟心脏组织能力的祖细胞。随着诱导多能干细胞 (iPS) 细胞技术的出现,患者特异性干细胞为通过发育的离散阶段系统地破译心脏发生分化提供了一个参考点。对来自选定患者群体的 iPS 细胞及其后代进行询问是揭示疾病分子机制的一种创新方法。因此,心脏发生的原则现在可以应用于再生医学,以优化个性化治疗、诊断和基于发现的科学,从而开发新的临床应用。

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