Canadian Light Source , Saskatoon , Saskatchewan S7N 4L5 , Canada.
Bioconjug Chem. 2018 Oct 17;29(10):3293-3308. doi: 10.1021/acs.bioconjchem.8b00480. Epub 2018 Sep 13.
The unique molecular structure confers the diquaternary ammonium gemini surfactants with enhanced nucleic acid complexation ability, bottom-up design flexibility, and relatively low cytotoxicity. To capitalize on their potential as gene delivery vectors, novel structural modifications should be explored. In this work, 22 novel peptide-modified gemini surfactants with various alkyl tails and peptide spacer modifications were evaluated. This work represents the first report of dendrimer-like gemini surfactants and first evaluation of the impact of incorporating a hydrocarbon linker into the peptide chain. Our aim was to establish a structure activity relationship of the peptide-modified gemini surfactants and to identify the fundamental architectural requirements needed for the ultimate gene delivery systems. In vitro assessment revealed that the highest transfection efficiency and lowest cytotoxicity were associated with the glycyl-lysine modified gemini surfactants having the hexadecyl tail, 16-7N(G-K)-16. In fact, it showed an 8-fold increase in secreted protein with 20% increase in cell viability relative to the first-generation unsubstituted gemini surfactants. Further increase in the size of the attached peptides resulted in a decrease in the transfection efficiency and cell viability. Whereas the incorporation of a hydrocarbon linker into the peptide chain decreased the transfection efficiency of compounds with dipeptides, it increased the transfection efficiency of compounds with larger peptide chains. Such an increase was more prominent with the incorporation of a longer hydrocarbon linker. We conclude that a balance between the hydrophilic and hydrophobic characteristics of the compound is necessary since it results in physicochemical parameters conducive to the gene delivery process.
独特的分子结构赋予了双季铵盐双子表面活性剂增强的核酸复合能力、自下而上的设计灵活性和相对较低的细胞毒性。为了利用它们作为基因传递载体的潜力,应该探索新的结构修饰。在这项工作中,评估了 22 种具有各种烷基链和肽间隔修饰的新型肽修饰双子表面活性剂。这是首次报道树枝状双子表面活性剂,并首次评估了在肽链中引入烃连接子的影响。我们的目的是建立肽修饰双子表面活性剂的构效关系,并确定最终基因传递系统所需的基本结构要求。体外评估表明,具有十六烷基尾的甘氨酰-赖氨酸修饰双子表面活性剂具有最高的转染效率和最低的细胞毒性 16-7N(G-K)-16。事实上,与第一代未取代的双子表面活性剂相比,它的分泌蛋白增加了 8 倍,细胞活力增加了 20%。附着的肽的尺寸进一步增加导致转染效率和细胞活力降低。而将烃连接子引入肽链会降低二肽化合物的转染效率,但会增加具有较大肽链的化合物的转染效率。在加入更长的烃连接子时,这种增加更为明显。我们得出结论,由于它导致有利于基因传递过程的物理化学参数,因此化合物的亲水性和疏水性之间需要平衡。