Departamento de Química, Universidade de Évora, R. Romão Ramalho, 59, 7000-671 Évora, Portugal.
Langmuir. 2011 Apr 5;27(7):3723-30. doi: 10.1021/la200236d. Epub 2011 Mar 10.
In this article, we investigate fluid-gel transformations of a DPPC lipid bilayer in the presence of nanoparticles, using coarse-grained molecular dynamics. Two types of nanoparticles are considered, specifically a 3 nm hydrophobic nanoparticle located in the core of the bilayer and a 6 nm charged nanoparticle located at the interface between the bilayer and water phase. Both negatively and positively charged nanoparticles at the bilayer interface are investigated. We demonstrate that the presence of all types of nanoparticles induces disorder effects in the structure of the lipid bilayer. These effects are characterized using computer visualization of the gel phase in the presence of nanoparticles, radial distribution functions, and order parameters. The 3 nm hydrophobic nanoparticle immersed in the bilayer core and the positively charged nanoparticle at the bilayer surface have no effect on the temperature of the fluid-gel transformation, compared to the bulk case. Interestingly, a negatively charged hydrophobic nanoparticle located at the surface of the bilayer causes slight shift of the fluid-gel transformation to a lower temperature, compared to the bulk bilayer case.
本文使用粗粒化分子动力学研究了 DPPC 脂质双层在纳米粒子存在下的流凝胶转变。考虑了两种类型的纳米粒子,即位于双层核心的 3nm 疏水纳米粒子和位于双层与水相之间界面的 6nm 带电纳米粒子。研究了双层界面处带负电和带正电的纳米粒子。我们证明了所有类型的纳米粒子的存在都会导致脂质双层结构的无序效应。这些效应通过在存在纳米粒子的情况下对凝胶相进行计算机可视化、径向分布函数和序参数来表征。与体相比,浸入双层核心的 3nm 疏水纳米粒子和位于双层表面的带正电纳米粒子对流体-凝胶转变的温度没有影响。有趣的是,位于双层表面的带负电的疏水纳米粒子会导致流体-凝胶转变略微向低温移动,与体双层相比。