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首页> 外文期刊>Expert opinion on biological therapy >Gene-delivery systems for iPS cell generation.
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Gene-delivery systems for iPS cell generation.

机译:用于iPS细胞生成的基因传递系统。

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摘要

IMPORTANCE OF THE FIELD: Induced pluripotent stem (iPS) cells offer extraordinary promise for regenerative medicine applications, and provide new opportunities for use in disease modeling, drug screening and drug toxicology. AREAS COVED IN THIS REVIEW: iPS cell technology is still in its infancy. In this review article, we present a comprehensive survey of reprogramming approaches focusing on gene-delivery systems used for generation of iPS cells from somatic cells, categorize gene-delivery vectors, and discuss their advantages and limitations for somatic cell reprogramming. We include pertinent literature published between 2006 and the present. WHAT THE READER WILL GAIN: Although iPS cell technology has been improved via the use of various gene-delivery vectors, it still suffers from either low reprogramming efficiency or too many genomic modification steps. Extensive work is still required to improve current vectors or explore new vectors for effectively reprogramming human somatic cells into iPS cells, with or without minimal genomic modification steps. TAKE HOME MESSAGE: A single non-integrating reprogramming vector system with high reprogramming efficiency is probably essential for generation of clinically translatable human iPS cells.
机译:领域的重要性:诱导多能干(iPS)细胞为再生医学的应用提供了非凡的希望,并为疾病建模,药物筛选和药物毒理学提供了新的机会。本评论涵盖的领域:iPS电池技术仍处于起步阶段。在这篇综述文章中,我们对重编程方法进行了全面的综述,重点是用于从体细胞生成iPS细胞的基因传递系统,对基因传递载体进行分类,并讨论了它们在体细胞重编程方面的优势和局限性。我们收录了2006年至今出版的相关文献。读者的收获:尽管通过使用各种基因传递载体已经改善了iPS细胞技术,但它仍然遭受重新编程效率低或基因组修饰步骤过多的困扰。仍需要大量工作来改进当前的载体或探索新的载体,以有效地将人类体细胞重编程为iPS细胞,无论是否需要最少的基因组修饰步骤。温馨提示:具有高重编程效率的单个非整合重编程载体系统可能对于生成可临床翻译的人iPS细胞至关重要。

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