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首页> 外文期刊>Reactive & Functional Polymers >Performance of three PDMAEMA-based polycation architectures as gene delivery agents in comparison to linear and branched PEI
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Performance of three PDMAEMA-based polycation architectures as gene delivery agents in comparison to linear and branched PEI

机译:与线性和分支PEI相比,三种基于PDMAEMA的聚阳离子体系结构作为基因传递剂的性能

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摘要

Polycations such as PEI (poly(ethyleneimine)) and PDMAEMA (poly(2-dimethylamino) ethyl methacry-late) are commonly used in non-viral gene delivery. Differences in efficiency exist, but comparative experiments on DNA compaction, cellular uptake, cellular trafficking and finally nuclear entry are largely lacking. In this study, ATRP (atom transfer radical polymerization) was used to synthesize three highly defined structures of PDMAEMA (linear, highly-branched, and star-shaped), which were systematically compared to linear and branched PEI. For the investigation of intracellular trafficking, polymers were fluorescently labelled.rnThe ability to compact DNA and cellular uptake efficacy were similar for all investigated polycations. Transfection efficiencies at optimized N/P ratio showed similar trends as cytotoxicities of the free polymers, with the star-shaped PDMAEMA reaching almost similar orders of transfection efficiencies as branched PEI. Twenty-four hours post-transfection, polymer fluorescence was almost exclusively found in close proximity (but never inside) the nucleus. In case of the 'good' transfectants (PEI, star-shaped PDMAEMA), the fluorescence concentrated in 'spots' of high intensity, arguing for localization in specific sub-cellular structures.
机译:聚阳离子,例如PEI(聚(亚乙基亚胺))和PDMAEMA(聚(2-二甲基氨基)甲基丙烯酸乙酯)通常用于非病毒基因传递。在效率上存在差异,但在DNA压缩,细胞摄取,细胞运输和最终进入核子方面尚缺乏比较实验。在这项研究中,使用原子转移自由基聚合(ATRP)来合成PDMAEMA的三个高度定义的结构(线性,高支化和星形),将它们与线性和分支PEI进行了系统比较。为了研究细胞内运输,对聚合物进行了荧光标记。对于所有研究的聚阳离子,紧缩DNA的能力和细胞吸收功效均相似。在优化的N / P比下,转染效率显示出与游离聚合物的细胞毒性相似的趋势,星形PDMAEMA的转染效率几乎达到了与支链PEI相似的数量级。转染后二十四小时,几乎仅在细胞核附近(但从未在细胞核内)发现聚合物荧光。如果是“好的”转染子(PEI,星形PDMAEMA),则荧光会集中在高强度的“斑点”上,这是因为它们定位在特定的亚细胞结构中。

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