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Long-Term Episomal Transgene Expression from Mitotically Stable Integration-Deficient Lentiviral Vectors

机译:从线粒体稳定的整合缺陷慢病毒载体的长期游离基因转基因表达。

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Nonintegrating gene delivery vectors have an improved safety profile compared with integrating vectors, but transgene retention is problematic as nonreplicating episomes are progressively and rapidly diluted out through cell division. We have developed an integration-deficient lentiviral vector (IDLV) system generating mitotically stable episomes capable of long-term transgene expression. We found that a transient cell cycle arrest at the time of transduction with IDLVs resulted in 13-45% of Chinese hamster ovary (CHO) cells expressing the transgene for over 100 cell generations in the absence of selection. The use of a scaffold/matrix attachment region did not result in improved episomal retention in this system, and episomes did not form after transduction with adeno-associated viral or minicircle vectors under the same conditions. Investigations into the episomal status of the vector genome using (1) linear amplification-mediated polymerase chain reaction followed by deep sequencing of vector-genome junctions, (2) Southern blotting, and (3) fluorescent in situ hybridization strongly suggest that the vector is not integrated in the vast majority of cells. In conclusion, we have developed an IDLV procedure generating mitotically stable episomes capable of long-term transgene expression. The application of this approach to stem cell populations could significantly improve the safety profile of a range of stem and progenitor cell gene therapies.
机译:与整合载体相比,非整合基因递送载体具有改进的安全性,但是转基因保留是有问题的,因为非复制型附加体通过细胞分裂被逐渐和迅速地稀释掉。我们已经开发了一种整合缺陷型慢病毒载体(IDLV)系统,该系统可产生能够长期转基因表达的有丝分裂稳定的附加体。我们发现,在没有选择的情况下,用IDLV进行转导时瞬时细胞周期停滞导致了13-45%的中国仓鼠卵巢(CHO)细胞表达了转基因超过100个细胞世代。使用支架/基质附着区并不能改善该系统中的游离保留,并且在相同条件下用腺相关病毒或小环载体转导后也没有形成附加体。使用(1)线性扩增介导的聚合酶链反应,随后对载体-基因组连接点进行深度测序,(2)Southern杂交和(3)荧光原位杂交对载体基因组的游离状态进行的研究强烈表明,该载体是没有整合到绝大多数细胞中总之,我们已经开发了IDLV程序,该程序生成能够长期转基因表达的有丝分裂稳定的附加体。这种方法在干细胞群体中的应用可以显着提高一系列干细胞和祖细胞基因疗法的安全性。

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