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Biodegradable Poly(Amino Ester) with Aromatic Backbone as Efficient Nonviral Gene Delivery Vectors

机译:具有芳香族骨架的可生物降解的聚(氨基酯)作为高效的非病毒基因传递载体

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The development of gene delivery vectors with high efficiency and biocompatibility is one of the critical points of gene therapy. Two biodegradable poly(amino ester)s were synthesized via ring-opening polymerization between low molecular weight (LMW) PEI and diepoxide. The molecular weights of poly(amino ester)s were measured by GPC. Agarose gel retardation assays showed that these materials have good DNA-binding ability and can retard the electrophoretic mobility of plasmid DNA (pDNA) at a weight ratio of 1. The formed polyplexes have proper sizes of around 200 nm and zeta-potential values of about 30–40 mV for cellular uptake. In vitro experiments revealed that polymer P2 gave higher transfection efficiency than PEI 25KDa and Lipofectamine 2000 with less toxicity, especially in 293 cells. Results demonstrate that such a type of degradable poly(amino ester) may serve as a promising non-viral gene vector.
机译:高效和生物相容性的基因传递载体的开发是基因治疗的关键之一。通过低分子量(LMW)PEI和二环氧化物之间的开环聚合反应,合成了两种可生物降解的聚(氨基酯)。聚(氨基酯)的分子量通过GPC测量。琼脂糖凝胶阻滞试验表明,这些材料具有良好的DNA结合能力,并且可以以1的重量比阻滞质粒DNA(pDNA)的电泳迁移率。形成的多链体的适当大小约为200 nm,ζ电势值约为1。 30–40 mV用于细胞摄取。体外实验表明,与PEI 25KDa和Lipofectamine 2000相比,聚合物P2的转染效率更高,毒性更小,尤其是在293细胞中。结果表明,这种类型的可降解的聚(氨基酯)可以作为有前途的非病毒基因载体。

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