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Interaction between polyether- poly (2-dimethylaminoethyl methacrylate) copolymers and phospholipid model vesicles - implications for gene delivery efficiency

机译:聚醚 - 聚(2-二甲基氨基甲基丙烯酸甲酯)共聚物与磷脂模型囊泡之间的相互作用 - 对基因输送效率的影响

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Our previous studies have demonstrated that surface-active copolymers of Pluronic® surfactants and tertiary amino polycations such as poly (2-dimethylaminoethyl methacrylate) (PDMA) possess an enhanced DNA transfection efficiency compared to PDMA homopolymers. In order to understand the mechanism of such action, we conducted model studies of the interaction of polymer with phospholipid vesicles and cell membranes. Three cationic methacrylate polymer systems were used in this study: PDMA homopolymer, and PEO-b-PDMA and Pluronic L92-b-PDMA block copolymers. The results showed that PDMA and PEO-b-PDMA only interact with the surface of the vesicles, whereas L92-b-PDMA interacts strongly with the inner hydrophobic segment of the vesicles. The studies show that the strong interaction between L92-b-PDMA and phospholipid membrane could be used to explain the enhanced transfection efficiency previously shown by the Pluronic L92-b-PDMA copolymer.
机译:我们以前的研究表明,与PDMA均聚物相比,Pluronic®表面活性剂和叔氨基聚合物如聚(2-二甲基氨基甲基丙烯酸甲酯)(PDMA)的表面活性共聚物具有增强的DNA转染效率。为了理解这种作用的机制,我们对磷脂囊泡和细胞膜的聚合物相互作用进行了模型研究。本研究中使用了三种阳离子甲基丙烯酸酯体系:PDMA均聚物和PEO-B-PDMA和PLURONIC L92-B-PDMA嵌段共聚物。结果表明,PDMA和PEO-B-PDMA仅与囊泡的表面相互作用,而L92-B-PDMA与囊泡的内疏水区段强烈相互作用。研究表明,L92-B-PDMA和磷脂膜之间的强相互作用可用于解释Pluronic L92-B-PDMA共聚物前面示出的增强的转染效率。

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