Human parthenogenetic embryonic stem cells: one potential resource for cell therapy.

Jie Hao, WanWan Zhu, Chao Sheng, Yang Yu, Qi Zhou
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引用次数: 34

Abstract

Pluripotent stem cells derived from somatic cells through such processes as nuclear transfer or induced pluripotent stem (iPS) cells present an important model for biomedical research and provide potential resources for cell replacement therapies. However, the overall efficiency of the conversional nuclear transfer is very low and the safety issue remains a major concern for iPS cells. Embryonic stem cells (ESCs) generated from parthenogenetic embryos are one attractive alternative as a source of histocompatible cells and tissues for cell therapy. Recent studies on human parthenogenetic embryonic stem cells (hPG ESCs) have revealed that these ESCs are very similar to the hESCs derived from IVF or in vivo produced blastocysts in gene expression and other characteristics, but full differentiation and development potential of these hPG ESCs have to be further investigated before clinical research and therapeutic interventions. To generate various pluripotent stem cells, diverse reprogramming techniques and approaches will be developed and integrated. This may help elucidate the fundamental mechanisms underlying reprogramming and stem cell biology, and ultimately benefit cell therapy and regenerative medicine.

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人类孤雌胚胎干细胞:细胞治疗的一种潜在资源。
体细胞通过核移植或诱导多能干细胞(iPS)等过程获得的多能干细胞是生物医学研究的重要模型,为细胞替代疗法提供了潜在资源。然而,转换核转移的整体效率非常低,安全问题仍然是诱导多能干细胞的主要问题。由孤雌生殖胚胎产生的胚胎干细胞(ESCs)作为组织相容性细胞和细胞治疗组织的来源是一个有吸引力的选择。最近对人类孤雌胚胎干细胞(hPG ESCs)的研究表明,这些ESCs在基因表达等特征上与体外受精或体内产生的囊胚hESCs非常相似,但在临床研究和治疗干预之前,这些hPG ESCs的充分分化和发育潜力有待进一步研究。为了产生多种多能干细胞,各种重编程技术和方法将被开发和整合。这可能有助于阐明重编程和干细胞生物学的基本机制,并最终有益于细胞治疗和再生医学。
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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