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首页> 外文期刊>Journal of Experimental Nanoscience >Cationic liposomes-polyallylamine-plasmid nanocomplexes for gene delivery
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Cationic liposomes-polyallylamine-plasmid nanocomplexes for gene delivery

机译:用于基因递送的阳离子脂质体 - 聚烯烃 - 质粒纳米复合物

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摘要

The aim of the present study was to prepare, characterise and evaluate the transfection efficiency of ternary complexes (lipopolyplexes) composed of cationic liposome, polyallylamine (PAA), plasmid DNA (pDNA). PAA was reacted with a varying amount of a linker, 6-bromohexanoic acid (6-bromo-HA), to prepare a series of modified polymers. Lipopolyplexes consisting of cationic liposome, PAA (or modified PAA), pDNA were prepared. The nanoparticles, so formed, were characterised by their size and zeta potential and were subsequently evaluated for their cytotoxicity and transfection ability on Neuro2A cells. Mean size of prepared complexes ranged from 170 to 280 nm. All lipopolylexes showed a positive zeta potential. Highest transfection efficiency was for lipopolyplex containing PAA 15 kDa-modified polymer and liposome at C/P ratio of 0.5. High molecular weight PAA was more toxic than PAA 15 kDa for Neuro2A cells especially in higher C/P ratio. The results indicate that using the hydrophobic modified PAA in the structure of lipopolyplexes is an effective strategy for improving transfection efficiency.
机译:本研究的目的是制备,表征和评估由阳离子脂质体,聚烯烃(PAA),质粒DNA(PDNA)组成的三元复合物(脂多贯复合)的转染效率。将Paa与不同量的接头,6-溴己酸(6-溴-HA)反应,以制备一系列改性聚合物。制备由阳离子脂质体,PAA(或改性PAA),PDNA组成的脂多相复合。由其形成的纳米颗粒的特征在于它们的尺寸和ζ电位,随后在神经2A细胞上进行细胞毒性和转染能力。制备配合物的平均尺寸范围为170至280nm。所有Lipopolylexes都显示出阳性Zeta潜力。最高的转染效率是含有Paa 15kDa-改性的聚合物和脂质体的脂多聚合物,C / P比为0.5。高分子量Paa比Paa 15kDa为神经2a细胞的毒性越来越毒性,特别是较高的C / P比。结果表明,使用脂多元化结构中的疏水改性PAA是改善转染效率的有效策略。

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