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三嗪树状大分子作为体外和体内 RNAi 的非病毒载体:外围基团和核心结构对生物活性的影响。

Triazine dendrimers as nonviral vectors for in vitro and in vivo RNAi: the effects of peripheral groups and core structure on biological activity.

机构信息

Department of Pharmaceutics and Biopharmacy, Philipps-Universitat, Marburg, Germany.

出版信息

Mol Pharm. 2010 Aug 2;7(4):969-83. doi: 10.1021/mp100101s.

Abstract

A family of triazine dendrimers, differing in their core flexibility, generation number, and surface functionality, was prepared and evaluated for its ability to accomplish RNAi. The dendriplexes were analyzed with respect to their physicochemical and biological properties, including condensation of siRNA, complex size, surface charge, cellular uptake and subcellular distribution, their potential for reporter gene knockdown in HeLa/Luc cells, and ultimately their stability, biodistribution, pharmacokinetics and intracellular uptake in mice after intravenous (iv) administration. The structure of the backbone was found to significantly influence siRNA transfection efficiency, with rigid, second generation dendrimers displaying higher gene knockdown than the flexible analogues while maintaining less off-target effects than Lipofectamine. Additionally, among the rigid, second generation dendrimers, those with either arginine-like exteriors or peripheries containing hydrophobic functionalities mediated the most effective gene knockdown, thus showing that dendrimer surface groups also affect transfection efficiency. Moreover, these two most effective dendriplexes were stable in circulation upon intravenous administration and showed passive targeting to the lung. Both dendriplex formulations were taken up into the alveolar epithelium, making them promising candidates for RNAi in the lung. The ability to correlate the effects of triazine dendrimer core scaffolds, generation number, and surface functionality with siRNA transfection efficiency yields valuable information for further modifying this nonviral delivery system and stresses the importance of only loosely correlating effective gene delivery vectors with siRNA transfection agents.

摘要

制备了一系列三嗪树状大分子,它们在核心柔韧性、代数和表面官能团上有所不同,并评估了它们进行 RNAi 的能力。从物理化学和生物学性质方面对树状聚合物进行了分析,包括 siRNA 的缩合、复合物大小、表面电荷、细胞摄取和亚细胞分布,研究了它们在 HeLa/Luc 细胞中报告基因敲低的潜力,最终研究了它们在静脉注射(iv)给药后在小鼠体内的稳定性、生物分布、药代动力学和细胞内摄取。发现骨架结构会显著影响 siRNA 转染效率,刚性第二代树状大分子的基因敲低效率高于柔性类似物,同时比 Lipofectamine 的脱靶效应更小。此外,在刚性第二代树状大分子中,具有精氨酸样外部结构或含有疏水性官能团的外围结构的树状大分子介导了最有效的基因敲低,这表明树状聚合物表面基团也会影响转染效率。此外,这两种最有效的树状聚合物在静脉注射后在循环中稳定,并且对肺部具有被动靶向性。这两种树状聚合物制剂都被摄取到肺泡上皮细胞中,使其成为肺部 RNAi 的有前途的候选药物。将三嗪树状大分子核心支架、代数和表面官能团的作用与 siRNA 转染效率相关联的能力为进一步修饰这种非病毒递送系统提供了有价值的信息,并强调了将有效基因传递载体与 siRNA 转染剂仅松散相关的重要性。

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