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具有不同间隔长度的羟乙基化双子表面活性剂的结构、生物络合及基因传递特性

Structural, biocomplexation and gene delivery properties of hydroxyethylated gemini surfactants with varied spacer length.

作者信息

Zakharova Lucia Ya, Gabdrakhmanov Dinar R, Ibragimova Alsu R, Vasilieva Elmira A, Nizameev Irek R, Kadirov Marsil K, Ermakova Elena A, Gogoleva Natalia E, Faizullin Dzhigangir A, Pokrovsky Andrey G, Korobeynikov Vladislav A, Cheresiz Sergey V, Zuev Yuriy F

机构信息

A.E Arbuzov Institute of Organic and Physical Chemistry, Kazan Scientific Center, Russian Academy of Sciences, 8 ul. Arbuzov, 420088 Kazan, Russian Federation.

A.E Arbuzov Institute of Organic and Physical Chemistry, Kazan Scientific Center, Russian Academy of Sciences, 8 ul. Arbuzov, 420088 Kazan, Russian Federation.

出版信息

Colloids Surf B Biointerfaces. 2016 Apr 1;140:269-277. doi: 10.1016/j.colsurfb.2015.12.045. Epub 2015 Dec 29.

Abstract

Gemini surfactants with hexadecyl tails and hydroxyethylated head groups bridged with tetramethylene (G4), hexamethylene (G6) and dodecamethylene (G12) spacers were shown to self-assemble at the lower critical micelle concentration compared to their conventional m-s-m analogs. The lipoplex formation and the plasmid DNA transfer into different kinds of host cells were studied. In the case of eukaryotic cells, high transfection efficacy has been demonstrated for DNA-gemini complexes, which increased as follows: G6<G4<G12. Different activity series, i.e., G6>G4>G12 has been obtained in the case of transformation of bacterial cells with plasmid DNA-gemini complexes, mediated by electroporation technique. Solely G6 shows transformation efficacy exceeding the control result (uncomplexed DNA), while the inhibitory effect occurs for G4 and G12. Analysis of physico-chemical features of single surfactants and lipoplexes shows that compaction and condensation effects change as follows: G6<G4 ≤ G12, i.e., agree with the order of transfection efficacy, which is supported by membrane tropic properties of G12. On the other hand, gel retardation assay and docking study testify low electrostatic affinity in G12/DNA pair, thereby indicating that hydrophobic effect probably plays important role in the lipoplex formation. Two factors are assumed to be responsible for the inhibition effect of gemini in the case of transformation of bacterial cells. They are (i) an unfavorable influence of cationic surfactants on the electroporation procedure due to depressing the electrophoretic effect; and (ii) antibacterial activity of cationic surfactants that may cause the disruption of integrity of cell membranes.

摘要

研究表明,与传统的m-s-m类似物相比,具有十六烷基尾链和由四亚甲基(G4)、六亚甲基(G6)和十二亚甲基(G12)间隔基桥连的羟乙基化头基的双子表面活性剂在较低的临界胶束浓度下会自组装。研究了脂质体的形成以及质粒DNA向不同类型宿主细胞的转移。在真核细胞的情况下,已证明DNA-双子表面活性剂复合物具有高转染效率,其增加顺序如下:G6<G4<G12。在用质粒DNA-双子表面活性剂复合物通过电穿孔技术介导转化细菌细胞的情况下,获得了不同的活性系列,即G6>G4>G12。仅G6显示出超过对照结果(未复合的DNA)的转化效率,而G4和G12则产生抑制作用。对单一表面活性剂和脂质体的物理化学特征分析表明,压缩和凝聚效应的变化如下:G6<G4≤G12,即与转染效率顺序一致,这得到了G12的膜嗜性特性的支持。另一方面,凝胶阻滞分析和对接研究证明G12/DNA对中的静电亲和力较低,从而表明疏水作用可能在脂质体形成中起重要作用。双子表面活性剂在细菌细胞转化情况下的抑制作用被认为由两个因素引起。它们是:(i)阳离子表面活性剂由于抑制电泳效应而对电穿孔过程产生不利影响;(ii)阳离子表面活性剂的抗菌活性可能导致细胞膜完整性的破坏。

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