Cheetham Matthew R, Griffiths Jack, Nijs Bart de, Heath George R, Evans Stephen D, Baumberg Jeremy J, Chikkaraddy Rohit
NanoPhotonics Centre, Cavendish Laboratory, Department of Physics, University of Cambridge, JJ Thompson Avenue, Cambridge CB3 0HE, United Kingdom.
School of Physics and Astronomy, University of Leeds, Woodhouse Lane, Leeds LS2 9JT, United Kingdom.
J Phys Chem Lett. 2020 Apr 16;11(8):2875-2882. doi: 10.1021/acs.jpclett.0c00182. Epub 2020 Mar 30.
Lipid bilayers assembled on solid substrates have been extensively studied with single-molecule resolution as the constituent molecules diffuse in 2D; however, the out-of-plane motion is typically ignored. Here we present the subnanometer out-of-plane diffusion of nanoparticles attached to hybrid lipid bilayers (HBLs) assembled on metal surfaces. The nanoscale cavity formed between the Au nanoparticle and Au film provides strongly enhanced optical fields capable of locally probing HBLs assembled in the gaps. This allows us to spectroscopically resolve the nanoparticles assembled on bilayers, near edges, and in membrane defects, showing the strong influence of charged lipid rafts. Nanoparticles sitting on the edges of the HBL are observed to flip onto and off of the bilayer, with flip energies of ∼10 meV showing how thermal energies dynamically modify lipid arrangements around a nanoparticle. We further resolve the movement of individual lipid molecules by doping the HBL with low concentrations of Texas Red (TxR) dye-labeled lipids.
在固体基质上组装的脂质双层已通过单分子分辨率进行了广泛研究,因为组成分子在二维中扩散;然而,平面外运动通常被忽略。在这里,我们展示了附着在金属表面组装的混合脂质双层(HBL)上的纳米颗粒的亚纳米平面外扩散。金纳米颗粒和金膜之间形成的纳米级空腔提供了强烈增强的光场,能够局部探测在间隙中组装的HBL。这使我们能够通过光谱分辨组装在双层上、靠近边缘和膜缺陷处的纳米颗粒,显示出带电脂筏的强烈影响。观察到位于HBL边缘的纳米颗粒会翻转到双层上或从双层上翻转下来,翻转能量约为10 meV,这表明热能如何动态地改变纳米颗粒周围的脂质排列。我们通过用低浓度的德克萨斯红(TxR)染料标记的脂质掺杂HBL,进一步解析单个脂质分子的运动。