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Tripod-like cationic lipids as novel gene carriers

机译:三脚架样阳离子脂质作为新型基因载体

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摘要

An innovative family of tridentate-cationic "single-chained lipids" designed to enhance DNA compaction and to promote endosomal escape was synthesized by coupling various lipids to a multibranched scaffold. DNA retardation assays confirmed the ability of the most members of the library to complex DNA. Classical molecular dynamics simulations performed on the lauryl derivative, bound to a short strand of DNA in aqueous solution supported these observations. These showed that two "arms" of the tripodal molecule are ideally suited to forming strong Coulombic interactions with two contiguous phosphate groups from the DNA backbone while the lipophilic tail stays perpendicular to the DNA helix. Gene transfer abilities of the library were assessed in multiple cell lines (CHO, Cos7, and 16HBE14o-) with some library members giving excellent transfection abilities and low cytotoxicity, supporting the use of this tripodal approach for the development of efficient gene delivery agents.
机译:通过将各种脂质偶联到多支支架上,合成了一个创新的三齿阳离子“单链脂质”家族,旨在增强DNA的致密性并促进内体逃逸。 DNA阻滞分析证实了该文库的大多数成员具有复合DNA的能力。对月桂酰衍生物进行的经典分子动力学模拟,结合在水溶液中的短链DNA上,支持了这些观察结果。这些表明三脚架分子的两个“臂”非常适合与来自DNA骨架的两个连续磷酸基团形成强库仑相互作用,而亲脂性尾巴保持垂直于DNA螺旋。在多个细胞系(CHO,Cos7和16HBE140)中评估了该文库的基因转移能力,其中一些文库成员具有出色的转染能力和低细胞毒性,支持使用这种三脚架方法开发有效的基因递送剂。

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