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Reconfiguring the architectures of cationic helical polypeptides to control non-viral gene delivery

机译:重新配置阳离子螺旋多肽的体系结构以控制非病毒基因的传递

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Poly(γ-4-((2-(piperidin-1-yl)ethyl)aminomethyl)benzyl-l-glutamate) (PPABLG), a cationic helical polypeptide, has been recently developed by us as an effective non-viral gene delivery vector. In attempts to elucidate the effect of molecular architecture on the gene delivery efficiencies and thereby identify a potential addition to PPABLG with improved transfection efficiency and reduced cytotoxicity, we synthesized PEG-PPABLG copolymers with diblock, triblock, graft, and star-shaped architectures via a controlled ring-opening polymerization. The PPABLG segment in all copolymers adopted helical structure; all copolymers displayed structure-related cell penetration properties and gene transfection efficiencies. In HeLa and HepG-2 cells, diblock and triblock copolymers exhibited reduced membrane activities and cytotoxicities but uncompromised gene transfection efficiencies compared to the non-PEGylated homo-PPABLG. The graft copolymer revealed lower DNA binding affinity and membrane activity presumably due to the intramolecular entanglement between the grafted PEG segments and charged side chains that led to reduced transfection efficiency. The star copolymer, adopting a spherical architecture with high density of PPABLG, afforded the highest membrane activity and relatively low cytotoxicity, which contributed to its potent gene transfection efficiency that outperformed the non-PEGylated PPABLG and Lipofectamine? 2000 by 3-5 and 3-134 folds, respectively. These findings provide insights into the molecular design of cationic polymers, especially helical polypeptides towards gene delivery.
机译:阳离子螺旋多肽聚(γ-4-((2-(哌啶-1-基)乙基)氨基甲基)苄基-1-谷氨酸)(PPABLG)是我们最近开发的一种有效的非病毒基因递送方法向量。为了阐明分子结构对基因传递效率的影响,从而确定潜在的PPABLG添加物,可提高转染效率并降低细胞毒性,我们通过合成了具有二嵌段,三嵌段,接枝和星形结构的PEG-PPABLG共聚物。控制的开环聚合。所有共聚物中的PPABLG链段均采用螺旋结构;所有共聚物均显示出与结构相关的细胞渗透特性和基因转染效率。在HeLa和HepG-2细胞中,与非PEG化的均聚PPABLG相比,二嵌段和三嵌段共聚物的膜活性和细胞毒性降低,但基因转染效率不受影响。接枝共聚物显示出较低的DNA结合亲和力和膜活性,可能是由于接枝的PEG片段与带电侧链之间的分子内缠结导致转染效率降低。星形共聚物采用具有高密度PPABLG的球形结构,具有最高的膜活性和相对较低的细胞毒性,这有助于其有效的基因转染效率,优于非PEG化的PPABLG和Lipofectamine? 2000分别为3-5和3-134倍。这些发现为阳离子聚合物,特别是螺旋多肽向基因传递的分子设计提供了见识。

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