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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Fusion of bolaamphiphile micelles: A method to prepare stable supported biomimetic membranes
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Fusion of bolaamphiphile micelles: A method to prepare stable supported biomimetic membranes

机译:聚两亲性胶束的融合:制备稳定的支撑仿生膜的方法

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Supported biomimetic membranes (SBMs) on solid substrates have been commonly prepared from vesicle-forming double-tail lipids, such as zwitterionic phospholipids, using the method of vesicle fusion. Here we report on the preparation of SBMs on silica surfaces via a similar process of "micelle fusion" from a cationic single-tail bolaamphiphile GLH-20 that forms spherical and elongated thread-like micelles in solution. We demonstrate that, in contrast to zwitterionic phospholipids, GLH-20 self-assembles into a stable contiguous SBM at both low and high ionic strengths. The cationic charge of GLH-20 promotes the formation of a stable SBM through enhanced double-layer interactions with the negatively charged silica surface. It is also shown that spinach aquaporin PM-28 was successfully incorporated within bolaamphiphile SBM in a manner similar to SBMs prepared by vesicle/proteoliposome fusion; thereby the inherent curvature of the micelle surface does not inhibit protein reconstitution. The results suggest that SBMs based on charged bolaamphiphiles might be an attractive platform for applications such as water purification and biosensors, where the stability and low defect rate of SBMs in diverse conditions are crucial for achieving desired performance.
机译:通常使用囊泡融合法从形成囊泡的双尾脂质(例如两性离子磷脂)制备固体基质上的支撑仿生膜(SBM)。在这里,我们报道了通过类似的“胶束融合”过程,从阳离子单尾博拉两亲物GLH-20在二氧化硅表面制备SBM的过程,该溶液在溶液中形成球形和细长的线状胶束。我们证明,与两性离子磷脂相反,GLH-20在低离子强度和高离子强度下均自组装成稳定的连续SBM。 GLH-20的阳离子电荷通过与带负电的二氧化硅表面的双层相互作用增强了稳定的SBM的形成。还显示出菠菜水通道蛋白PM-28以与通过囊泡/蛋白脂质体融合制备的SBM相似的方式成功地掺入了双亲性SBM中。因此,胶束表面的固有曲率不会抑制蛋白质的重建。结果表明,基于带电荷的双亲性的SBM可能是诸如水净化和生物传感器等应用的有吸引力的平台,在这些应用中,SBM在各种条件下的稳定性和低缺陷率对于实现所需性能至关重要。

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