Modulation of Pyridinium Cationic Lipid–DNA Complex Properties by Pyridinium Gemini Surfactants and Its Impact on Lipoplex Transfection Properties

阳离子聚合 转染 化学 阳离子脂质体 基因传递 生物物理学 肺表面活性物质 Zeta电位 细胞毒性 脂质体 动态光散射 双层 脂质双层 脂质体 生物化学 有机化学 材料科学 纳米技术 纳米颗粒 体外 生物 基因 载体(分子生物学) 重组DNA
作者
Vishnu Dutt Sharma,Julia Lees,Nicholas E. Hoffman,Eugen Brailoiu,Muniswamy Madesh,Stephanie L. Wunder,Marc A. Ilies
出处
期刊:Molecular Pharmaceutics [American Chemical Society]
卷期号:11 (2): 545-559 被引量:50
标识
DOI:10.1021/mp4005035
摘要

The study presents the effects of blending a cationic gemini surfactant into cationic lipid bilayers and its impact on the plasmid DNA compaction and delivery process. Using nanoDSC, dynamic light scattering, zeta potential, and electrophoretic mobility measurements, together with transfection (2D- and 3D-) and viability assays, we identified the main physicochemical parameters of the lipid bilayers, liposomes, and lipoplexes that are affected by the gemini surfactant addition. We also correlated the cationic bilayer composition with the dynamics of the DNA compaction process and with transfection efficiency, cytotoxicity, and the internalization mechanism of the resultant nucleic acid complexes. We found that the blending of gemini surfactant into the cationic bilayers fluidized the supramolecular assemblies, reduced the amount of positive charge required to fully compact the plasmid DNA and, in certain cases, changed the internalization mechanism of the lipoplexes. The transfection efficiency of select ternary lipoplexes derived from cationic gemini surfactants and lipids was several times superior to the transfection efficiency of corresponding binary lipoplexes, also surpassing standard transfection systems. The overall impact of gemini surfactants into the formation and dynamic of cationic bilayers was found to depend heavily on the presence of colipids, their nature, and amount present in lipoplexes. The study confirmed the possibility of combining the specific properties of pyridinium gemini surfactants and cationic lipids synergistically to obtain efficient synthetic transfection systems with negligible cytotoxicity useful for therapeutic gene delivery.
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