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血液干细胞发育的调控

Regulation of Blood Stem Cell Development.

作者信息

Dzierzak E, de Pater E

机构信息

Erasmus MC, Rotterdam, The Netherlands; MRC Centre for Inflammation Research and MRC Centre for Regenerative Medicine, University of Edinburgh, Edinburgh, United Kingdom.

Erasmus MC, Rotterdam, The Netherlands.

出版信息

Curr Top Dev Biol. 2016;118:1-20. doi: 10.1016/bs.ctdb.2016.01.001. Epub 2016 Feb 13.

Abstract

Understanding how the blood system is formed is an ongoing fundamental research challenge. Developmental biology has provided many insights into the molecules and processes that affect the formation of the blood tissues, both in health and disease. It is of particular interest for clinical transplantation therapies to understand how hematopoietic stem cells (HSCs)-the self-renewing purveyors of the adult blood system that produce over 10 different functionally specialized cell lineages and over 10(11) cells daily-are generated during embryonic stages. Recent successes to reprogram the fate of adult differentiated cells to pluripotency and to other cell lineages now highlight the importance of identifying the cells and molecules that affect the in vivo developmental initiation of rare and robust transplantable HSCs. The close association of the developing hematopoietic and vascular system, hematopoietic cell mobility through the circulation, and the essential role of the embryonic hematopoietic system in adult hematopoietic cell development make this a formidable study. This chapter reviews the advances, controversies, and current state of our knowledge of the growing field of hematopoietic development, with a special focus on the regulation of the natural transdifferentiation of endothelial cells to HSCs within the developing embryo.

摘要

了解血液系统如何形成是一项持续存在的基础研究挑战。发育生物学已就影响血液组织形成的分子和过程提供了许多见解,涵盖健康和疾病状态。对于临床移植治疗而言,特别令人感兴趣的是了解造血干细胞(HSCs)——成年血液系统中自我更新的供应者,每天产生超过10种不同功能特化的细胞谱系以及超过10¹¹个细胞——在胚胎阶段是如何产生的。近期将成年分化细胞重编程为多能性以及其他细胞谱系方面的成功,现在凸显了识别影响罕见且强大的可移植造血干细胞体内发育起始的细胞和分子的重要性。发育中的造血系统与血管系统的紧密关联、造血细胞通过循环的迁移,以及胚胎造血系统在成年造血细胞发育中的关键作用,使得这成为一项艰巨的研究。本章回顾了造血发育这一不断发展的领域的进展、争议以及我们当前的知识状态,特别关注发育胚胎中内皮细胞向造血干细胞自然转分化的调控。

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