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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Nanoscale membrane activity of surfactins: influence of geometry, charge and hydrophobicity.
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Nanoscale membrane activity of surfactins: influence of geometry, charge and hydrophobicity.

机译:表面活性素的纳米级膜活性:几何形状,电荷和疏水性的影响。

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We used real-time atomic force microscopy (AFM) to visualize the interactions between supported lipid membranes and well-defined surfactin analogs, with the aim to understand the influence of geometry, charge and hydrophobicity. AFM images of mixed dioleoylphosphatidylcholine/dipalmitoylphosphatidylcholine (DOPC/DPPC) bilayers recorded after injection of cyclic surfactin at 1 mM, i.e. well-above the critical micelle concentration, revealed a complete solubilization of the bilayers within 30 min. A linear analog having the same charge and acyl chains was able to solubilize DOPC, but not DPPC, and to promote redeposition leading eventually to a new bilayer. Increasing the charge of the polar head or the length of the acyl chains of the analogs lead to the complete solubilization of both DOPC and DPPC, thus to a stronger membrane activity. Lastly, we found that at low surfactin concentrations (40 microM), DPPC domains were always resistant to solubilization. These data demonstrate the crucial role played by geometry, charge and hydrophobicity in modulating the membrane activity (solubilization, redeposition) of surfactin. Also, this study suggests that synthetic analogs are excellent candidates for developing new surfactants with tunable, well-defined properties for medical and biotechnological applications.
机译:我们使用实时原子力显微镜(AFM)来可视化支持的脂质膜和定义明确的表面活性素类似物之间的相互作用,以了解几何形状,电荷和疏水性的影响。在以1 mM(即高于临界胶束浓度)注射环状表面活性素后记录的混合的二油酰基磷脂酰胆碱/二棕榈酰磷脂酰胆碱(DOPC / DPPC)双层的AFM图像显示双层在30分钟内完全溶解。具有相同电荷和酰基链的线性类似物能够溶解DOPC,而不溶解DPPC,并能促进再沉积,最终形成新的双层。增加极性头的电荷或类似物的酰基链的长度会导致DOPC和DPPC的完全溶解,从而导致更强的膜活性。最后,我们发现在低表面活性素浓度(40 microM)下,DPPC结构域始终对增溶具有抗性。这些数据表明,几何形状,电荷和疏水性在调节表面活性素的膜活性(增溶,再沉积)中起着至关重要的作用。同样,这项研究表明,合成类似物是开发具有可调谐,定义明确的特性的新型表面活性剂的极佳候选者,以用于医学和生物技术领域。

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