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亚微米粒子在脂质双层膜上的侧向扩散。

Lateral Diffusion of a Submicrometer Particle on a Lipid Bilayer Membrane.

机构信息

Japan Advanced Institute of Science and Technology, School of Materials Science , 1-1 Asahidai, Nomi, Ishikawa 923-1292, Japan.

出版信息

Langmuir. 2016 Dec 27;32(51):13771-13777. doi: 10.1021/acs.langmuir.6b02448. Epub 2016 Dec 13.

Abstract

In past decades, nanoparticles and nanomaterials have been actively used for applications such as visualizing nano/submicrometer cell structure, killing cancer cells, and using drug delivery systems. It is important to understand the physicochemical mechanisms that govern the motion of nanoparticles on a plasma membrane surface. However, the motion of small particles of <1000 nm on lipid membranes is poorly understood. In this study, we investigated the diffusion of particles with a diameter of 200-800 nm on a lipid membrane using cell-sized liposomes. Particle-associated liposomes were obtained by applying centrifugal force to a mixture of liposomes and particle solutions. We measured the thermal motion of the particles by phase-contrast microscopy. We found that (i) the particle-size dependence of the diffusion of particles adhering to membranes was better described by the DADL model rather than the Einstein-Stokes model, (ii) the diffusion coefficient of a particle strongly depends on the adsorption state of the particle, such as fully or partially wrapped by the membrane, and (iii) anomalous diffusion was induced by the localization of particles on the neck of budded vesicles.

摘要

在过去的几十年中,纳米粒子和纳米材料被积极用于各种应用,例如可视化纳米/亚微米细胞结构、杀死癌细胞以及使用药物输送系统。了解控制纳米粒子在质膜表面运动的物理化学机制非常重要。然而,对于<1000nm 的小颗粒在脂质膜上的运动,我们知之甚少。在这项研究中,我们使用细胞大小的脂质体研究了脂质膜上直径为 200-800nm 的颗粒的扩散。通过将脂质体和颗粒溶液的混合物施加离心力,获得与颗粒结合的脂质体。我们通过相差显微镜测量颗粒的热运动。我们发现:(i)与膜结合的颗粒的扩散的粒径依赖性,通过 DADL 模型描述比爱因斯坦-斯托克斯模型更好;(ii)颗粒的扩散系数强烈取决于颗粒的吸附状态,例如完全或部分被膜包裹;(iii)颗粒在芽状囊泡颈部的定位诱导了异常扩散。

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