Amino Acid-Substituted Gemini Surfactant-Based Nanoparticles as Safe and Versatile Gene Delivery Agents

化学 基因传递 赖氨酸 转染 氨基酸 生物相容性 甘氨酸 细胞毒性 生物分子 组合化学 毒性 肺表面活性物质 纳米颗粒 生物化学 基因 体外 有机化学 纳米技术 材料科学
作者
Jagbir Singh,Peng Yang,Déborah Michel,Ronald E. Verrall,Marianna Földvári,Ildikó Badea
出处
期刊:Current Drug Delivery [Bentham Science Publishers]
卷期号:8 (3): 299-306 被引量:52
标识
DOI:10.2174/156720111795256200
摘要

Gene based therapy represents an important advance in the treatment of diseases that heretofore have had either no treatment or cure. To capitalize on the true potential of gene therapy, there is a need to develop better delivery systems that can protect these therapeutic biomolecules and deliver them safely to the target sites. Recently, we have designed and developed a series of novel amino acid-substituted gemini surfactants with the general chemical formula C12H25(CH3)2N+- (CH2)3-N(AA)-(CH2)3-N+(CH3)2-C12H25 (AA= glycine, lysine, glycyl-lysine and, lysyl-lysine). These compounds were synthesized and tested in rabbit epithelial cells using a model plasmid and a helper lipid. Plasmid/gemini/lipid (P/G/L) nanoparticles formulated using these novel compounds achieved higher gene expression than the nanoparticles containing the parent unsubstituted compound. In this study, we evaluated the cytotoxicity of P/G/L nanoparticles and explored the relationship between transfection efficiency/toxicity and their physicochemical characteristics (such as size, binding properties, etc.). An overall low toxicity is observed for all complexes with no significant difference among substituted and unsubstituted compounds. An interesting result revealed by the dye exclusion assay suggests a more balanced protection of the DNA by the glycine and glycyl-lysine substituted compounds. Thus, the higher transfection efficiency is attributed to the greater biocompatibility and flexibility of the amino acid/peptide-substituted gemini surfactants and demonstrates the feasibility of using amino acid-substituted gemini surfactants as gene carriers for the treatment of diseases affecting epithelial tissue. Keywords: Amino acid-substituted, cytotoxicity, gemini surfactants, gene delivery, non-viral, physicochemical properties, glycyl-lysine, DOPE, FACS, triplicates
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