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细胞融合介导的重编程:多能性还是转分化?对再生医学的影响。

Cell-fusion-mediated reprogramming: pluripotency or transdifferentiation? Implications for regenerative medicine.

机构信息

Center for Genomic Regulation (CRG), 08003 Barcelona, Spain.

出版信息

Adv Exp Med Biol. 2011;713:137-59. doi: 10.1007/978-94-007-0763-4_9.

Abstract

Cell-cell fusion is a natural process that occurs not only during development, but as has emerged over the last few years, also with an important role in tissue regeneration. Interestingly, in-vitro studies have revealed that after fusion of two different cell types, the developmental potential of these cells can change. This suggests that the mechanisms by which cells differentiate during development to acquire their identities is not irreversible, as was considered until a few years ago. To date, it is well established that the fate of a cell can be changed by a process known as reprogramming. This mainly occurs in two different ways: the differentiated state of a cell can be reversed back into a pluripotent state (pluripotent reprogramming), or it can be switched directly to a different differentiated state (lineage reprogramming). In both cases, these possibilities of obtaining sources of autologous somatic cells to maintain, replace or rescue different tissues has provided new and fundamental insights in the stem-cell-therapy field. Most interestingly, the concept that cell reprogramming can also occur in vivo by spontaneous cell fusion events is also emerging, which suggests that this mechanism can be implicated not only in cellular plasticity, but also in tissue regeneration. In this chapter, we will summarize the present knowledge of the molecular mechanisms that mediate the restoration of pluripotency in vitro through cell fusion, as well as the studies carried out over the last 3 decades on lineage reprogramming, both in vitro and in vivo. How the outcome of these studies relate to regenerative medicine applications will also be discussed.

摘要

细胞融合是一种自然过程,不仅发生在发育过程中,而且近年来也被发现对组织再生具有重要作用。有趣的是,体外研究表明,在两种不同类型的细胞融合后,这些细胞的发育潜能可以发生变化。这表明,细胞在发育过程中分化以获得其身份的机制并不是不可逆的,这与几年前的观点相反。迄今为止,已经证实细胞的命运可以通过一种称为重编程的过程来改变。这主要通过两种不同的方式发生:细胞的分化状态可以被逆转回多能状态(多能重编程),或者可以直接被切换到不同的分化状态(谱系重编程)。在这两种情况下,这些获得自体体细胞来源以维持、替代或挽救不同组织的可能性,为干细胞治疗领域提供了新的和基本的见解。最有趣的是,细胞重编程也可以通过自发的细胞融合事件在体内发生的概念也正在出现,这表明这种机制不仅可以涉及细胞可塑性,还可以涉及组织再生。在本章中,我们将总结目前关于通过细胞融合在体外恢复多能性的分子机制的知识,以及过去 30 年在体外和体内进行的谱系重编程研究。这些研究的结果如何与再生医学应用相关也将进行讨论。

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