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首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Efficient Non-viral Gene Delivery into Human Hematopoietic Stem Cells by Minicircle Sleeping Beauty Transposon Vectors
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Efficient Non-viral Gene Delivery into Human Hematopoietic Stem Cells by Minicircle Sleeping Beauty Transposon Vectors

机译:通过Minicircle睡眠美容转座子载体高效的非病毒基因递送到人造血干细胞中

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The Sleeping Beauty (SB) transposon system is a non-viral gene delivery platform that combines simplicity, inexpensive manufacture, and favorable safety features in the context of human applications. However, efficient correction of hematopoietic stem and progenitor cells (HSPCs) with nonviral vector systems, including SB, demands further refinement of gene delivery techniques. We set out to improve SB gene transfer into hard-to-transfect human CD34(+) cells by vectorizing the SB system components in the form of minicircles that are devoid of plasmid backbone sequences and are, therefore, significantly reduced in size. As compared to conventional plasmids, delivery of the SB transposon system as minicircle DNA is similar to 20 times more efficient, and it is associated with up to a 50% reduction in cellular toxicity in human CD34(+) cells. Moreover, providing the SB transposase in the form of synthetic mRNA enabled us to further increase the efficacy and biosafety of stable gene delivery into hematopoietic progenitors ex vivo. Genome-wide insertion site profiling revealed a close-to-random distribution of SB transposon integrants, which is characteristically different from gammaretroviral and lentiviral integrations in HSPCs. Transplantation of gene-marked CD34(+) cells in immunodeficient mice resulted in long-term engraftment and hematopoietic reconstitution, which was most efficient when the SB transposase was supplied as mRNA and nucleofected cells were maintained for 4-8 days in culture before transplantation. Collectively, implementation of minicircle and mRNA technologies allowed us to further refine the SB transposon system in the context of HSPC gene delivery to ultimately meet clinical demands of an efficient and safe non-viral gene therapy protocol.
机译:睡美观(SB)转座系统是一种非病毒基因递送平台,将简单,廉价的制造和有利的安全特征在人类应用中结合。然而,利用非血管载体系统(包括SB)的造血干细胞(HSPC)有效校正造血干细胞(HSPC),需要进一步改进基因递送技术。我们首先通过将Sb系统组分以缺乏质粒骨架序列的小碱基形式的形式改善Sb基因转移到硬质染色的人CD34(+)细胞中,因此,大小显着降低。与常规质粒相比,将Sb转座系统的递送作为微循环DNA的递送类似于高效的20倍,并且在人CD34(+)细胞中的细胞毒性降低至多50%。此外,以合成mRNA的形式提供Sb转座酶使我们进一步将稳定基因递送到造血祖细胞的疗效和生物安全性。基因组宽的插入部位分析显示了Sb转座子整合体的近似随机分布,其特征性地与Hspcs中的γetroviroral和慢病毒集成不同。在免疫缺陷小鼠中的基因标记的CD34(+)细胞的移植导致长期植入和造血重构,当Sb转座酶作为mRNA和髓基团在移植前将其作为mRNA和髓基团的细胞保持4-8天的最有效。统称,Minicircle和MRNA技术的实施使我们能够在HSPC基因递送的背景下进一步优化Sb转座系统,最终满足高效和安全的非病毒基因治疗方案的临床需求。

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