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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Defects in Self-Assembled Monolayers on Nanoparticles Prompt Phospholipid Extraction and Bilayer-Curvature-Dependent Deformations
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Defects in Self-Assembled Monolayers on Nanoparticles Prompt Phospholipid Extraction and Bilayer-Curvature-Dependent Deformations

机译:在纳米颗粒上的自组装单层缺陷促进磷脂萃取和双层曲率依赖性变形

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Metal nanoparticles (NPs) functionalized with self-assembled monolayers (SAMs) of long alkanethiol ligands are subject to defects in the SAM structure due to the interplay between alkyl chain packing and the free volume available in space per ligand. We find via dissipative particle dynamics (DPD) simulations that hydrophobic contact between protruding acyl chains of phospholipids from lipid vesicles and exposed alkyl chains in SAM defects prompts NP insertion and that defects become sites for phospholipid extraction. Experiments show that AuNPs coated with cationic (11-mercaptoundecyl)-trimethylammonium bromide, analogous to the models used for the simulations, attach to and acquire lipids from planar supported lipid bilayers, while AuNPs coated with anionic 11-mercaptoundecanoic acid do not. Phospholipid extraction and the structure of the ligands inserted in bilayers collectively contribute to bilayer thinning at the site of NP insertion and bilayer-curvature-dependent deformability, revealing how these typical engineered SAM-coated NPs interface with lipid-bilayer systems with potential biological consequences.
机译:由于烷基链填料和每个配体的空间中可用的空间中可用的可用体积在空间之间的相互作用,具有长链烷醇配体的自组装单层配体的金属纳米粒子(SAMS)官能化的金属纳米颗粒(SAMS)在SAM结构中受到缺陷。我们发现通过耗散粒子动力学(DPD)模拟,从脂质囊泡的磷脂突出的酰基链之间的疏水接触,SAM缺陷中的暴露烷基链促使NP插入,并且该缺陷成为磷脂萃取的位点。实验表明,涂覆阳离子(11-巯吩脲) - 三甲基溴化铵的剖腹产,类似于用于模拟的模型,附着于并从平面支撑的脂质双层的脂质,而涂覆阴离子11-巯羟基酸的剖腹产不具有。磷脂萃取和插入双层中的配体的结构共同有助于在NP插入和双层曲率依赖性变形性部位的双层稀疏,揭示这些典型的工程示例的SAM涂覆的NPS接口与潜在的生物后果的脂质双层系统。

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