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首页> 外文期刊>Current Drug Delivery >High Performance Gene Delivery Polymeric Vector: Nano-Structured Cationic Star Polymers (Star Vectors)
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High Performance Gene Delivery Polymeric Vector: Nano-Structured Cationic Star Polymers (Star Vectors)

机译:高性能基因传递聚合物载体:纳米结构的阳离子星形聚合物(星形载体)

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Nano-structured hyperbranched cationic star polymers, called star vectors, were molecularly designed for a novel gene delivery non-viral vector. The linear and 3, 4 or 6 branched water-soluble cationic polymers, which had same molecular weight of ca. 18,000, were synthesized by iniferter (initiator-transfer agent-terminator)-based photo-livingradical polymerization of 3-(N,N-dimethylamino)propyl acrylamide, initiated from respective multi-dithiocarbamatederivatized benzenes as an iniferter. All polymers produced polyion complexes 'polyplexes' by mixing with pDNA (pGL3-control plasmid), in which the particle size was ca. 250 nm in diameter [the charge ratio < 2 / 1 (vevtor / pDNA)] and ca. 150 nm (the charge ratio > 2.5 / 1), and the ζ-potential was ca. +10 mV (the charge ratio > 1 / 1). When COS-1 cells were incubated with the polyplexes 12h after preparation under the charge ratio of 5 / 1, higher gene expression was obtained as an increase in branching, with a little cytotoxicity. The relative gene expression to the linear polymer was about 2, 5, and 10 times in 3-, 4-, and 6-branched polymers, respectively. The precise change in branching of polymers enabled the control of the gene transfer activity.
机译:纳米结构的超支化阳离子星形聚合物,称为星形载体,是针对新型基因传递非病毒载体进行分子设计的。线性和3、4或6支链的水溶性阳离子聚合物,其分子量约为1。通过基于引发剂(引发剂-转移剂-终止剂)的光活泼自由基聚合,由各自的多二硫代氨基甲酸酯化苯引发的3-(N,N-二甲基氨基)丙基丙烯酰胺合成了18,000个。所有聚合物均通过与pDNA(pGL3-对照质粒)混合而产生了聚离子复合物“ polyplexs”,其粒径约为。直径为250 nm [电荷比<2/1(载体/ pDNA)],约150 nm(电荷比> 2.5 / 1),且ζ电位约为。 +10 mV(电荷比> 1/1)。当在制备后12小时以5/1的电荷比将COS-1细胞与多聚体一起孵育时,由于分支的增加,获得了更高的基因表达,而细胞毒性却很小。在3、4和6支聚合物中,相对于线性聚合物的相对基因表达分别约为2、5和10倍。聚合物支链的精确变化使得能够控制基因转移活性。

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