State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences, 1st Beichen West Road, Beijing 100101, China.
Cell Res. 2011 May;21(5):770-8. doi: 10.1038/cr.2010.180. Epub 2010 Dec 28.
Mouse cloning from fertilized eggs can assist development of approaches for the production of "genetically tailored" human embryonic stem (ES) cell lines that are not constrained by the limitations of oocyte availability. However, to date only zygotes have been successfully used as recipients of nuclei from terminally differentiated somatic cell donors leading to ES cell lines. In fertility clinics, embryos of advanced embryonic stages are usually stored for future use, but their ability to support the derivation of ES cell lines via somatic nuclear transfer has not yet been proved. Here, we report that two-cell stage electrofused mouse embryos, arrested in mitosis, can support developmental reprogramming of nuclei from donor cells ranging from blastomeres to somatic cells. Live, full-term cloned pups from embryonic donors, as well as pluripotent ES cell lines from embryonic or somatic donors, were successfully generated from these reconstructed embryos. Advanced stage pre-implantation embryos were unable to develop normally to term after electrofusion and transfer of a somatic cell nucleus, indicating that discarded pre-implantation human embryos could be an important resource for research that minimizes the ethical concerns for human therapeutic cloning. Our approach provides an attractive and practical alternative to therapeutic cloning using donated oocytes for the generation of patient-specific human ES cell lines.
从受精卵中克隆老鼠可以帮助开发方法,用于生产不受卵母细胞可用性限制的“基因定制”人类胚胎干细胞 (ES) 系。然而,迄今为止,只有受精卵被成功用作终末分化体细胞供体细胞核的受体,从而产生 ES 细胞系。在生育诊所中,通常会储存高级胚胎阶段的胚胎以备将来使用,但它们通过体细胞核移植支持 ES 细胞系衍生的能力尚未得到证实。在这里,我们报告说,处于有丝分裂期阻滞的两细胞期电融合小鼠胚胎可以支持供体细胞的核进行发育重编程,供体细胞范围从胚胎细胞到体细胞。来自这些重构胚胎的胚胎供体的活产足月克隆幼仔以及来自胚胎或体细胞供体的多能 ES 细胞系均成功生成。在电融合和体细胞核转移后,高级阶段的植入前胚胎无法正常发育至足月,这表明废弃的人类植入前胚胎可能是一种重要的资源,用于最小化人类治疗性克隆的伦理问题的研究。我们的方法为使用捐赠的卵母细胞生成患者特异性人类 ES 细胞系的治疗性克隆提供了一种有吸引力和实用的替代方法。