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同源盒基因在干细胞分化中的作用。

Role of Hox genes in stem cell differentiation.

作者信息

Seifert Anne, Werheid David F, Knapp Silvana M, Tobiasch Edda

机构信息

Anne Seifert, David F Werheid, Silvana M Knapp, Edda Tobiasch, Department of Applied Sciences, Bonn-Rhine-Sieg University of Applied Sciences, 53359 Rheinbach, Germany.

出版信息

World J Stem Cells. 2015 Apr 26;7(3):583-95. doi: 10.4252/wjsc.v7.i3.583.

Abstract

Hox genes are an evolutionary highly conserved gene family. They determine the anterior-posterior body axis in bilateral organisms and influence the developmental fate of cells. Embryonic stem cells are usually devoid of any Hox gene expression, but these transcription factors are activated in varying spatial and temporal patterns defining the development of various body regions. In the adult body, Hox genes are among others responsible for driving the differentiation of tissue stem cells towards their respective lineages in order to repair and maintain the correct function of tissues and organs. Due to their involvement in the embryonic and adult body, they have been suggested to be useable for improving stem cell differentiations in vitro and in vivo. In many studies Hox genes have been found as driving factors in stem cell differentiation towards adipogenesis, in lineages involved in bone and joint formation, mainly chondrogenesis and osteogenesis, in cardiovascular lineages including endothelial and smooth muscle cell differentiations, and in neurogenesis. As life expectancy is rising, the demand for tissue reconstruction continues to increase. Stem cells have become an increasingly popular choice for creating therapies in regenerative medicine due to their self-renewal and differentiation potential. Especially mesenchymal stem cells are used more and more frequently due to their easy handling and accessibility, combined with a low tumorgenicity and little ethical concerns. This review therefore intends to summarize to date known correlations between natural Hox gene expression patterns in body tissues and during the differentiation of various stem cells towards their respective lineages with a major focus on mesenchymal stem cell differentiations. This overview shall help to understand the complex interactions of Hox genes and differentiation processes all over the body as well as in vitro for further improvement of stem cell treatments in future regenerative medicine approaches.

摘要

Hox基因是一个在进化上高度保守的基因家族。它们决定了两侧对称生物的前后体轴,并影响细胞的发育命运。胚胎干细胞通常没有任何Hox基因表达,但这些转录因子会以不同的时空模式被激活,从而决定各个身体区域的发育。在成体中,Hox基因除其他作用外,还负责驱动组织干细胞向各自谱系分化,以修复和维持组织及器官的正常功能。由于它们参与胚胎和成体的发育过程,有人提出它们可用于改善体外和体内的干细胞分化。在许多研究中,已发现Hox基因是干细胞向脂肪生成、参与骨骼和关节形成的谱系(主要是软骨生成和成骨)、包括内皮和平滑肌细胞分化的心血管谱系以及神经发生分化的驱动因素。随着预期寿命的延长,组织重建的需求持续增加。由于干细胞具有自我更新和分化潜能,它们已成为再生医学中越来越受欢迎的治疗手段选择。特别是间充质干细胞,由于其易于操作和获取,同时致瘤性低且伦理问题少,使用越来越频繁。因此,本综述旨在总结迄今为止已知的身体组织中天然Hox基因表达模式与各种干细胞向各自谱系分化过程之间的相关性,主要侧重于间充质干细胞的分化。这一概述将有助于理解Hox基因与全身及体外分化过程的复杂相互作用,以便在未来的再生医学方法中进一步改进干细胞治疗。

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