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Combinatorial Evaluation of Cations, pH-sensitive and Hydrophobic Moieties for Polymeric Vector Design

机译:阳离子,pH敏感和疏水部分对聚合物载体设计的组合评估

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摘要

Three combinatorial libraries of polymeric vectors were evaluated to investigate the functional roles of molecular weight (MW), cations, pH-sensitive moieties, and hydrophobic derivitization in polymer-mediated gene delivery. Four cationic and pH-sensitive moieties (imidazole, primary, secondary, and tertiary amino) and three hydrophobic residues (C4 butyl, C6 hexyl, and C8 octyl) were assessed in single and serially incremented, binary combinations. Three MWs were evaluated—10, 30, and 50 kDa. The highest levels of transfection, comparable to branched PEI (25 kDa), were achieved by 30 kDa and 50 kDa formulations containing primary amino and imidazole groups. Primary amino groups offered superior charge-neutralizing and size-condensing capacity, while imidazole groups appeared to bind with DNA via nonelectrostatically mediated interactions to produce stable polyplexes that were resistant to premature dissociation. Eight of the 10 highest-transfecting polymers possessed IC50 values greater than the maximum concentration of free polymers exposed to cells (200 µg/ml). The results herein have identified highly efficient polymeric formulations with superb toxicity profiles and have revealed the functional roles that the investigated pendant groups play in the transfection process. The reported polymeric system offers a versatile and robust platform upon which future structure–function studies may be based to create safer and more efficient polymeric vectors.
机译:评估了聚合载体的三个组合文库,以研究分子量(MW),阳离子,pH敏感部分和疏水衍生化在聚合物介导的基因传递中的功能作用。以单个和连续增加的二元组合形式评估了四个阳离子和pH敏感部分(咪唑,伯,仲和叔氨基)和三个疏水残基(C4丁基,C6己基和C8辛基)。评估了三个MW,分别为10、30和50 kDa。通过包含伯氨基和咪唑基团的30 kDa和50 kDa制剂,可以达到与分支PEI(25 kDa)相当的最高转染水平。伯氨基具有优异的电荷中和能力和尺寸凝聚能力,而咪唑基似乎通过非静电介导的相互作用与DNA结合,产生稳定的多聚体,可抵抗过早解离。 10个转染率最高的聚合物中有8个的IC50值大于暴露于细胞的游离聚合物的最大浓度(200 µg / ml)。本文的结果确定了具有极好的毒性特征的高效聚合物制剂,并揭示了所研究的侧基在转染过程中发挥的功能作用。报道的聚合物系统提供了一个通用而强大的平台,未来的结构-功能研究可以以此为基础来创建更安全,更高效的聚合物载体。

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