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PLL/PAE/DNA ternary complexes with enhanced endosomal escape ability for efficient and safe gene transfection

机译:具有增强的内体逃逸能力的PLL / PAE / DNA三元复合物,可实现高效,安全的基因转染

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摘要

Three oligomeric linear poly(beta-amino esters) (PAEs) were synthesized and used to improve the gene transfection efficiency and reduce the cytotoxicity of poly(L-lysine) (PLL). The synthesized PAEs can co-assemble with PLL and plasmid DNA to form PLL/PAE/DNA ternary complexes of nanoscale sizes and moderate surface charges. The existence of multiple tertiary amines on PAE backbones imparts the ternary complexes with strong proton buffering capacity and therefore enhances the endosomal escape ability of the ternary complexes. In HeLa cells, the PLL/PAE/DNA ternary complexes show up to 476-fold enhancement in gene transfection efficiency when compared with the PLL/DNA binary complexes. Meanwhile, the incorporation of PAE oligomers significantly reduced the cytotoxicity of PLL. The strategy proposed here may provide insights into the development of PLL based gene delivery systems.
机译:合成了三种低聚线性聚(β-氨基酯)(PAE),并用于提高基因转染效率和降低聚(L-赖氨酸)(PLL)的细胞毒性。合成的PAE可以与PLL和质粒DNA共组装,以形成纳米级尺寸和中等表面电荷的PLL / PAE / DNA三元复合物。 PAE主链上存在多个叔胺使三元配合物具有强大的质子缓冲能力,因此增强了三元配合物的内体逸出能力。在HeLa细胞中,与PLL / DNA二元复合物相比,PLL / PAE / DNA三元复合物的基因转染效率提高了476倍。同时,掺入PAE低聚物显着降低了PLL的细胞毒性。本文提出的策略可以为基于PLL的基因传递系统的开发提供见识。

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