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Insights into the structure and nanomechanics of a quatsome membrane by force spectroscopy measurements and molecular simulations

机译:见解和nanomechanics结构quatsome膜通过武力光谱学测量和分子模拟

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Quatsomes (QS) are unilamellar nanovesicles constituted by quaternary ammonium surfactants and sterols in defined molar ratios. Unlike conventional liposomes, QS are stable upon long storage such as for several years, they show outstanding vesicle-to-vesicle homogeneity regarding size and lamellarity, and they have the structural and physicochemical requirements to be a potential platform for site-specific delivery of hydrophilic and lipophilic molecules. Knowing in detail the structure and mechanical properties of the QS membrane is of great importance for the design of deformable and flexible nanovesicle alternatives, highly pursued in nanomedicine applications such as the transdermal administration route. In this work, we report the first study on the detailed structure of the cholesterol:CTAB QS membrane at the nanoscale, using atomic force microscopy (AFM) and spectroscopy (AFM-FS) in a controlled liquid environment (ionic medium and temperature) to assess the topography of supported QS membranes (SQMs) and to evaluate the local membrane mechanics. We further perform molecular dynamics (MD) simulations to provide an atomistic interpretation of the obtained results. Our results are direct evidence of the bilayer nature of the QS membrane, with characteristics of a fluid-like membrane, compact and homogeneous in composition, and with structural and mechanical properties that depend on the surrounding environment. We show how ions alter the lateral packing, modifying the membrane mechanics. We observe that according to the ionic environment and temperature, different domains may coexist in the QS membranes, ascribed to variations in molecular tilt angles. Our results indicate that QS membrane properties may be easily tuned by altering the lateral interactions with either different environmental ions or counterions.
机译:由季铵表面活性剂和固醇类定义的摩尔比率。传统脂质体,QS稳定长存储等了好几年,他们表演突出vesicle-to-vesicle同质性关于尺寸和lamellarity,他们有结构和理化要求一个潜在的特定站点交付平台亲水、亲脂性的分子。详细的结构和力学性能QS膜具有重要意义的nanovesicle变形设计和灵活选择,在纳米高度追求应用,如皮肤管理路线。首先研究的详细结构胆固醇:CTAB QS膜在纳米尺度上,使用原子力显微镜(AFM)和光谱学(AFM-FS)控制液体环境(离子介质和温度)评估支持QS膜的地形(厂房)和评估当地的膜力学。(MD)模拟提供一个原子论的结果的解释。结果双分子层性质的直接证据QS膜的特点液体膜、紧凑和均匀组成、结构和机械属性取决于周围环境。包装、修改膜力学。根据离子环境的观察和温度,不同的领域可能共存QS膜,归因于变化分子倾斜角度。QS膜性能可能很容易调整改变横向相互作用不同的环境离子或抗衡离子。

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