Cell-cell fusion as a means to establish pluripotency.

J T Do, H R Schöler
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引用次数: 22

Abstract

Embryonic stem cells (ESCs), embryonic germ cells (EGCs), and embryonic carcinoma cells (ECCs) are three types of pluripotent cells derived from mammalian embryos. The three cell types are capable not only of self-renewal, but also of having the potential to give rise to cells of all tissue types in the fetal and adult body. In several reports, ESCs, ECCs, and EGCs have been described to reprogram somatic cells in vitro. After reprogramming caused by fusion, somatic cells exhibit various features of pluripotent cells: expression of pluripotency markers (e.g., Oct4, nanog, and Rex-1), absence of tissue-specific gene expression, reactivation of inactive X chromosome of female somatic cells, demethylation, as well as histone modification. An activity in pluripotent stem cells appears to be capable of inducing the global changes inherent in the reprogramming of somatic cells. Investigations involving pluripotent stem cells will yield substantial insight into various fundamental biological processes, such as cellular differentiation and de-differentiation. Most importantly for the public, however, is that such studies might lead into cell-based therapies and as such have the potential to change regenerative medicine.

细胞-细胞融合作为建立多能性的手段。
胚胎干细胞(ESCs)、胚胎生殖细胞(EGCs)和胚胎癌细胞(ECCs)是来源于哺乳动物胚胎的三种多能细胞。这三种类型的细胞不仅能够自我更新,而且有可能在胎儿和成人体内产生所有组织类型的细胞。在一些报道中,ESCs, ECCs和EGCs已经被描述为体外体细胞重编程。体细胞经过融合引起的重编程后,表现出多能性细胞的各种特征:多能性标记物(如Oct4、nanog和Rex-1)的表达,缺乏组织特异性基因的表达,女性体细胞无活性X染色体的再激活,去甲基化,以及组蛋白修饰。多能干细胞中的一种活性似乎能够诱导体细胞重编程中固有的全局变化。涉及多能干细胞的研究将对各种基本生物学过程产生实质性的见解,例如细胞分化和去分化。然而,对公众来说最重要的是,这些研究可能会导致基于细胞的疗法,因此有可能改变再生医学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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