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首页> 外文期刊>Biomacromolecules >Investigating the Effects of Block versus Statistical Glycopolycations Containing Primary and Tertiary Amines for Plasmid DNA Delivery
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Investigating the Effects of Block versus Statistical Glycopolycations Containing Primary and Tertiary Amines for Plasmid DNA Delivery

机译:研究含有伯胺和叔胺的嵌段和统计糖聚阳离子对质粒DNA传递的影响

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Polymer composition and morphology can affect the way polymers interact with biomolecules, cell membranes, and intracellular components. Herein, diblock, triblock, and statistical polymers that varied in charge center type (primary and/or tertiary amines) were synthesized to elucidate the role of polymer compositionon plasmid DNA complexation, delivery, and cellular toxicity of the resultant polyplexes. The polymers were synthesized via RAFT.polymerization and were composed of a carbohydrate moiety, 2-deoxy-2-methacrylamido glucopyr-anose (MAG), a primary amine group, N-(2-aminoethyl) niethacrylaniide (AEMA), and/or a tertiary amine moiety, N,N-(2-dimethylamino)ethyl methacrylamide (DMAEMA). The lengths of both the carbohydrate and cationic blocks were kept constant while the primary amine to tertiary amine ratio was varied within the polymers. The polymers were characterized via nuclear magnetic resonance (NMR) and size exclusion chromatography (SEC), and the polyplex formulations with pDNA were characterized in various media using dynamic light scattering (DLS). Polyplexes formed with the block copolymers were found to be more colloidally stable than statistical copolymers with similar composition, which rapidly aggregated to micrometer sized particles. Also, polymers composed of a higher primary amine content were more colloidally stable than polymers consisting of the tertiary amine charge centers. Plasmid DNA internalization, transgene expression, and toxicity were examined with each polymer. As the amount of tertiary amine in the triblock copolymers increased, both gene expression and toxicity were found to increase. Moreover, it was found that increasing the content of tertiary amines imparted higher membrane disruption/destabilization. While both block and statistical copolymers had high transfection efficiencies, some of the statistical systems exhibited both higher transfection and toxicity than the analogous block polymers, potentially due to the lack of a hydrophilic block to screen membrane interaction/disruption. Overall, the triblock terpolymers offer an attractive composition profile that exhibited interesting properties as pDNA delivery vehicles.
机译:聚合物的组成和形态会影响聚合物与生物分子,细胞膜和细胞内组分相互作用的方式。本文中,合成了电荷中心类型不同的二嵌段,三嵌段和统计聚合物(伯胺和/或叔胺),以阐明聚合物成分对质粒DNA络合,递送和所得多聚体的细胞毒性的作用。所述聚合物通过RAFT聚合来合成,并且由碳水化合物部分,2-脱氧-2-甲基丙烯酰胺基吡喃葡萄糖(MAG),伯胺基,N-(2-氨基乙基)乙丙烯酰胺(AEMA)和/或组成。叔胺部分,N,N-(2-二甲基氨基)乙基甲基丙烯酰胺(DMAEMA)。碳水化合物和阳离子嵌段的长度都保持恒定,而聚合物中伯胺与叔胺的比例却有所变化。通过核磁共振(NMR)和尺寸排阻色谱(SEC)表征聚合物,并使用动态光散射(DLS)在各种介质中表征具有pDNA的多聚体制剂。发现由嵌段共聚物形成的复合物比具有相似组成的统计共聚物更胶体稳定,所述统计共聚物具有相似的组成,其迅速聚集为微米尺寸的颗粒。而且,由较高伯胺含量组成的聚合物比由叔胺电荷中心组成的聚合物更胶体稳定。用每种聚合物检查质粒DNA的内在化,转基因表达和毒性。随着三嵌段共聚物中叔胺含量的增加,发现基因表达和毒性均增加。此外,发现增加叔胺的含量赋予较高的膜破坏/稳定作用。尽管嵌段共聚物和统计共聚物均具有较高的转染效率,但某些统计系统比类似的嵌段聚合物显示出更高的转染和毒性,这可能是由于缺乏用于筛选膜相互作用/破坏的亲水性嵌段所致。总体而言,三嵌段三元共聚物具有诱人的组成特征,并表现出作为pDNA传递载体的有趣特性。

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