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Using the Localized Surface Plasmon Resonance of Gold Nanoparticles to Monitor Lipid Membrane Assembly and Protein Binding

机译:使用金纳米粒子的局部表面等离子共振监测脂质膜组装和蛋白质结合。

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摘要

Gold nanoparticles provide a template for preparing supported lipid layers with well-defined curvature. Here, we utilize the localized surface plasmon resonance (LSPR) of gold nanoparticles as a sensor for monitoring the preparation of lipid layers on nanoparticles. The LSPR is very sensitive to the immediate surroundings of the nanoparticle surface and it is used to monitor the coating of lipids and subsequent conversion of a supported bilayer to a hybrid membrane with an outer lipid leaflet and an inner leaflet containing hydrophobic alkanethiol. We demonstrate that both decanethiol and propanethiol are able to form hybrid membranes and that the membrane created over the shorter thiol can be stripped from the gold along with the lipid leaflet using β-mercaptoethanol. The sensitivity of the nanoparticle LSPR to the refractive index (RI) of its surroundings is greater when the shorter thiol is used (37.8 ± 1.5 nm per RI unit) than when the longer thiol is used (27.5 ± 0.5 nm per RI unit). Finally, C-reactive protein binding to the membrane is measured using this sensor allowing observation of both protein-membrane and nanoparticle-nanoparticle interactions without chemical labeling of protein or lipids.
机译:金纳米颗粒提供了用于制备具有明确曲率的支持脂质层的模板。在这里,我们利用金纳米颗粒的局部表面等离振子共振(LSPR)作为传感器,以监测纳米颗粒上脂质层的制备。 LSPR对纳米颗粒表面的周围环境非常敏感,可用于监测脂质的包​​被以及随后将支持的双层转化为带有外部脂质小叶和内部小叶的疏水膜,其中杂叶包含疏水性链烷硫醇。我们证明了癸硫醇和丙硫醇都能够形成杂化膜,并且使用β-巯基乙醇可以将短硫醇上形成的膜与脂质小叶一起从金中剥离。当使用较短的硫醇时(每RI单元37.8±1.5 nm),与使用较长的硫醇时(每RI单元27.5±0.5 nm)相比,纳米粒子LSPR对周围环境的折射率(RI)的敏感性更高。最后,使用该传感器测量C反应蛋白与膜的结合,从而无需蛋白或脂质的化学标记即可观察蛋白-膜和纳米颗粒-纳米颗粒的相互作用。

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