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Efficient generation of transgene-free human induced pluripotent stem cells (iPSCs) by temperature-sensitive Sendai virus vectors

机译:温度敏感的仙台病毒载体可有效产生无转基因的人诱导多能干细胞(iPSC)

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摘要

After the first report of induced pluripotent stem cells (iPSCs), considerable efforts have been made to develop more efficient methods for generating iPSCs without foreign gene insertions. Here we show that Sendai virus vector, an RNA virus vector that carries no risk of integrating into the host genome, is a practical solution for the efficient generation of safer iPSCs. We improved the Sendai virus vectors by introducing temperature-sensitive mutations so that the vectors could be easily removed at nonpermissive temperatures. Using these vectors enabled the efficient production of viral/factor-free iPSCs from both human fibroblasts and CD34+ cord blood cells. Temperature-shift treatment was more effective in eliminating remaining viral vector-related genes. The resulting iPSCs expressed human embryonic stem cell markers and exhibited pluripotency. We suggest that generation of transgene-free iPSCs from cord blood cells should be an important step in providing allogeneic iPSC-derived therapy in the future.
机译:在首次报道了诱导多能干细胞(iPSC)之后,人们做出了巨大的努力来开发更有效的方法来生成没有外源基因插入的iPSC。在这里,我们显示仙台病毒载体,一种不携带整合入宿主基因组风险的RNA病毒载体,是有效生成更安全的iPSC的实用解决方案。我们通过引入对温度敏感的突变改良了仙台病毒载体,以便可以在非允许温度下轻松去除载体。使用这些载体可以从人成纤维细胞和CD34 + 脐血细胞高效生产无病毒/无因子的iPSC。温度转移处理在消除残留的病毒载体相关基因方面更为有效。所得的iPSC表达人类胚胎干细胞标记并显示出多能性。我们建议,从脐血细胞中产生无转基因的iPSC,应该是将来提供同种异体iPSC衍生疗法的重要步骤。

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