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Development of polymeric gene delivery carriers: PEGylated copolymers of L-lysine and L-phenylalanine.

机译:聚合基因传递载体的开发:L-赖氨酸和L-苯丙氨酸的聚乙二醇化共聚物。

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Block copolymers consisting of poly(ethylene glycol) (PEG) and poly(amino acid)-based random copolymers were successfully synthesized by the ring opening polymerization of the N-carboxy anhydrides (NCA) of L-lysine and L-phenylalanine. The synthesized copolymers had a molecular weight of around 30,000 and contained L-lysine and L-phenylalanine residues with molar ratios of 10/0, 9/1, 8/2, 7/3 and 6/4. The complex formation of the copolymer and pCMV-luc plasmid DNA was confirmed by the gel retardation assay and zeta potential measurement. Complete neutralization was achieved at an N/P ratio of more than 1.0 and the size of the complex was determined to be around 150 nm by dynamic light scattering. The cytotoxicity and transfection efficiency were tested on the HEK 293T cell line. The synthesized copolymers displayed negligible cytotoxicity, resulting in a cell viability of more than 95%, while those of the poly(L-lysine) (PLL) and poly(ethylenimine) (PEI) homopolymer were around 65 and 55%, respectively, under comparable conditions. The introduction of the hydrophilic PEG is believed to reduce the toxicity of the copolymer, due to its enhanced biocompatibility, and to impart improved stability to the complex under physiological conditions. The transfection efficiency at the optimized charge ratio of 7 was dramatically improved as the molar content of the L-phenylalanine residues in the copolymers increased and reached a maximum value at an L-phenylalanine content of 30 mol%. The transfection efficiency of the PEGK7/plasmid DNA complex was around 80 times higher than that of PLL, despite the presence of neutral PEG as a block segment.
机译:通过L-赖氨酸和L-苯丙氨酸的N-羧基酸酐(NCA)的开环聚合,成功地合成了由聚(乙二醇)(PEG)和基于聚(氨基酸)的无规共聚物组成的嵌段共聚物。合成的共聚物具有约30,000的分子量,并且包含摩尔比为10 / 0、9 / 1、8 / 2、7 / 3和6/4的L-赖氨酸和L-苯丙氨酸残基。共聚物和pCMV-luc质粒DNA的复合物形成通过凝胶阻滞分析和ζ电势测量得到证实。在N / P比大于1.0时实现了完全中和,并且通过动态光散射将复合物的大小确定为约150 nm。在HEK 293T细胞系上测试了细胞毒性和转染效率。合成的共聚物显示出微不足道的细胞毒性,导致细胞存活率超过95%,而聚(L-赖氨酸)(PLL)和聚(乙烯亚胺)(PEI)均聚物的在室温下的存活率分别约为65%和55%。可比的条件。亲水性PEG的引入由于其增强的生物相容性而被认为降低了共聚物的毒性,并且在生理条件下赋予了复合物改善的稳定性。当共聚物中L-苯丙氨酸残基的摩尔含量增加并在L-苯丙氨酸含量为30mol%时达到最大值时,在最佳电荷比为7时的转染效率显着提高。尽管存在中性PEG作为嵌段片段,但PEGK7 /质粒DNA复合物的转染效率比PLL高约80倍。

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