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Controlled solvent-exchange deposition of phospholipid membranes onto solid surfaces

机译:磷脂膜在固体表面上的受控溶剂交换沉积

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Controlled deposition of lipid bilayers plays a key role in creating supported membranes for biosensing devices and biophysical cell studies. The authors adopt a solvent-exchange method in order to deposit a phospholipid bilayer on solid substrates. The basic concept of deposition is to dissolve phospholipids in isopropanol-water mixtures and to increase water content gradually. Shortly before the onset of the micelle-to-vesicle transition, a lipid bilayer nucleates at the solid surface. They investigate the bulk phase behavior and surface coverage using small angle x-ray scattering and attenuated total reflection-Fourier transform infrared spectroscopy. They find a sequence of transitions from inverted-monomeric-micellar and vesicle phases correlating with an increasing amount of lipid on the adsorption layer. Supported lipid bilayers, prepared using this approach, are homogeneous and fluid.
机译:脂质双层的受控沉积在创建用于生物传感设备和生物物理细胞研究的支撑膜中起着关键作用。作者采用溶剂交换方法,以便在固体基质上沉积磷脂双层。沉积的基本概念是将磷脂溶解在异丙醇-水混合物中,并逐渐增加水含量。在胶束到囊泡转变开始之前不久,脂质双层在固体表面成核。他们使用小角度X射线散射和衰减全反射-傅立叶变换红外光谱法研究了体相行为和表面覆盖率。他们发现了从反向单体胶束相和囊泡相的一系列转变,这些转变与吸附层上脂质的增加有关。用这种方法制备的支持的脂质双层是均质的并且是流体。

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