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Polycationic star polymers with hyperbranched cores for gene delivery

机译:具有超支化核心的聚阳离子星形聚合物,用于基因传递

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Core-shell type stars synthesized via atom transfer radical polymerization were used for the delivery of nucleic acids. The interior of the stars consisted of hyperbranched poly(arylene oxindole), while the arms were composed of poly(N,N-dimethylaminoethyl methacrylate). The length of the star arms varied in degree of polymerization (DP) from 14 to 98. The hydrodynamic radius of the structures measured in water indicated the presence of small aggregates, while isolated stars ranging in size from 14 to 29 nm were seen in organic solvent. The phase transition temperatures of the stars in water, measured in basic conditions, were shifted to lower values with increasing DP of the arms. Stable polyplexes of stars with plasmid DNA were formed. Their size varied from 300 nm to 400 nm, depending upon the DP of arms. The zeta potential of the polyplexes was positive, which facilitated their cellular uptake. The DP of the arms influenced the transfection efficiency of HT-1080 cells, demonstrating that stars are promising candidates for synthetic gene vectors.
机译:通过原子转移自由基聚合合成的核-壳型恒星用于核酸的传递。恒星内部由超支化聚亚芳基羟吲哚组成,而臂由聚甲基丙烯酸N,N-二甲基氨基乙基酯组成。星形臂的长度的聚合度(DP)从14到98不等。在水中测量的结构的流体力学半径表明存在小聚集体,而在有机物中则观察到大小在14至29 nm的孤立恒星溶剂。在基本条件下测得的水中恒星的相变温度随着臂的DP的增加而降低到较低的值。形成了带有质粒DNA的稳定的恒星多链体。它们的大小从300 nm到400 nm不等,具体取决于臂的DP。多聚体的ζ电位为正,这促进了它们的细胞摄取。手臂的DP影响了HT-1080细胞的转染效率,表明恒星是合成基因载体的有希望的候选者。

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