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首页> 外文期刊>Polymers >Systematic Study of a Library of PDMAEMA-Based, Superparamagnetic Nano-Stars for the Transfection of CHO-K1 Cells
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Systematic Study of a Library of PDMAEMA-Based, Superparamagnetic Nano-Stars for the Transfection of CHO-K1 Cells

机译:基于PDMAEMA的超顺磁性纳米星库转染CHO-K1细胞的系统研究

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摘要

The introduction of the DNA into mammalian cells remains a challenge in gene delivery, particularly in vivo. Viral vectors are unmatched in their efficiency for gene delivery, but may trigger immune responses and cause severe side-reactions. Non-viral vectors are much less efficient. Recently, our group has suggested that a star-shaped structure improves and even transforms the gene delivery capability of synthetic polycations. In this contribution, this effect was systematically studied using a library of highly homogeneous, paramagnetic nano-star polycations with varied arm lengths and grafting densities. Gene delivery was conducted in CHO-K1 cells, using a plasmid encoding a green fluorescent reporter protein. Transfection efficiencies and cytotoxicities varied systematically with the nano-star architecture. The arm density was particularly important, with values of approximately 0.06 armsm 2 yielding the best results. In addition, a certain fraction of the cells became magnetic during transfection. The gene delivery potential of a nano-star and its ability to render the cells magnetic did not have any correlations. End-capping the polycation arms with di(ethylene glycol) methyl ether methacrylate (PDEGMA) significantly improved serum compatibility under transfection conditions; such nano-stars are potential candidates for future in vivo testing.
机译:将DNA引入哺乳动物细胞仍然是基因递送,特别是体内递送方面的挑战。病毒载体的基因传递效率无与伦比,但可能触发免疫反应并引起严重的副反应。非病毒载体效率低得多。最近,我们的小组建议,星形结构可以改善甚至改变合成聚阳离子的基因传递能力。在这一贡献中,使用具有不同臂长和接枝密度的高度均一的顺磁性纳米星聚阳离子文库系统地研究了这种效果。使用编码绿色荧光报告蛋白的质粒在CHO-K1细胞中进行基因传递。转染效率和细胞毒性随着纳米星结构的变化而系统地变化。臂密度特别重要,约为0.06臂/ nm 2的值可获得最佳结果。另外,一定比例的细胞在转染过程中变成磁性的。纳米星的基因传递潜能及其使细胞具有磁性的能力没有任何相关性。在转染条件下,用二乙二醇二甲基丙烯酸甲酯(PDEGMA)封端聚阳离子臂可显着改善血清相容性。这样的纳米星是未来体内测试的潜在候选者。

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