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从发育中和停止发育的胚胎中获取人类胚胎干细胞。

Derivation of human embryonic stem cells from developing and arrested embryos.

作者信息

Zhang Xin, Stojkovic Petra, Przyborski Stefan, Cooke Michael, Armstrong Lyle, Lako Majlinda, Stojkovic Miodrag

机构信息

Centre for Stem Cell Biology and Developmental Genetics, University of Newcastle, Newcastle upon Tyne, United Kingdom.

出版信息

Stem Cells. 2006 Dec;24(12):2669-76. doi: 10.1634/stemcells.2006-0377. Epub 2006 Sep 21.

Abstract

Human embryonic stem cells (hESC) hold huge promise in modern regenerative medicine, drug discovery, and as a model for studying early human development. However, usage of embryos and derivation of hESC for research and potential medical application has resulted in polarized ethical debates since the process involves destruction of viable developing human embryos. Here we describe that not only developing embryos (morulae and blastocysts) of both good and poor quality but also arrested embryos could be used for the derivation of hESC. Analysis of arrested embryos demonstrated that these embryos express pluripotency marker genes such OCT4, NANOG, and REX1. Derived hESC lines also expressed specific pluripotency markers (TRA-1-60, TRA-1-81, SSEA4, alkaline phosphatase, OCT4, NANOG, TERT, and REX1) and differentiated under in vitro and in vivo conditions into derivates of all three germ layers. All of the new lines, including lines derived from late arrested embryos, have normal karyotypes. These results demonstrate that arrested embryos are additional valuable resources to surplus and donated developing embryos and should be used to study early human development or derive pluripotent hESC.

摘要

人类胚胎干细胞(hESC)在现代再生医学、药物发现以及作为研究人类早期发育的模型方面具有巨大潜力。然而,由于该过程涉及破坏存活的发育中的人类胚胎,使用胚胎以及获取hESC用于研究和潜在医学应用引发了两极分化的伦理辩论。在此我们描述,不仅质量好和质量差的发育胚胎(桑葚胚和囊胚),而且停滞发育的胚胎都可用于获取hESC。对停滞发育胚胎的分析表明,这些胚胎表达多能性标记基因,如OCT4、NANOG和REX1。所获得的hESC系也表达特定的多能性标记(TRA-1-60、TRA-1-81、SSEA4、碱性磷酸酶、OCT4、NANOG、TERT和REX1),并在体外和体内条件下分化为所有三个胚层的衍生物。所有新的细胞系,包括从晚期停滞发育胚胎获得的细胞系,都具有正常的核型。这些结果表明,停滞发育的胚胎是多余和捐赠的发育胚胎之外的宝贵资源,应用于研究人类早期发育或获取多能性hESC。

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