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An efficient SCNT technology for the establishment of personalized and public human pluripotent stem cell banks

机译:用于建立个性化和公共人类多能干细胞库的高效SCNT技术

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摘要

Although three different research groups have reported successful derivations of human somatic cell nuclear transfer-derived embryonic stem cell (SCNT-ESC) lines using fetal, neonatal and adult fibroblasts, the extremely poor development of cloned embryos has hindered its potential applications in regenerative medicine. Recently, however, our group discovered that the severe methylation of lysine 9 in Histone H3 in a human somatic cell genome was a major SCNT reprogramming barrier, and the overexpression of KDM4A, a H3K9me3 demethylase, significantly improved the blastocyst formation of SCNT embryos. In particular, by applying this new approach, we were able to produce multiple SCNT-ES cell lines using oocytes obtained from donors whose eggs previously failed to develop to the blastocyst stage. Moreover, the success rate was closer to 25%, which is comparable to that of IVF embryos, so that our new human SCNT method seems to be a practical approach to establishing a pluripotent stem cell bank for the general public as well as for individual patients. [BMB Reports 2016; 49(4): 197-198]
机译:尽管三个不同的研究小组已报告成功使用胎儿,新生儿和成年成纤维细胞成功衍生了人体细胞核移植衍生的胚胎干细胞(SCNT-ESC)系,但克隆胚胎的发育极差,阻碍了其在再生医学中的潜在应用。然而,最近,我们的小组发现,人类体细胞基因组中组蛋白H3中赖氨酸9的严重甲基化是SCNT重编程的主要障碍,HDM3K9me3脱甲基酶KDM4A的过表达显着改善了SCNT胚胎的胚泡形成。特别地,通过应用这种新方法,我们能够使用从卵子先前未能发育到胚泡期的供体中获得的卵母细胞生产多种SCNT-ES细胞系。此外,成功率接近25%,与IVF胚胎的成功率相当,因此我们的新人类SCNT方法似乎是为普通大众和个人患者建立多能干细胞库的实用方法。 。 [BMB报告2016; 49(4):197-198]

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