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Curvature-driven adsorption of cationic nanoparticles to phase boundaries in multicomponent lipid bilayers

机译:Curvature-driven吸附的阳离子纳米粒子相边界多组分脂质影响

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Understanding the interactions between surface-functionalized gold nanoparticles (NPs) and lipid bilayers is necessary to guide the design of NPs for biomedical applications. Recent experiments found that cationic NPs adsorb more strongly to phase-separated multicomponent lipid bilayers than single-component liquid-disordered bilayers, suggesting that phase separation affects NP-bilayer interactions. In this work, we use coarse-grained molecular dynamics simulations to investigate the effect of lipid phase behavior on the adsorption of small cationic NPs. We first determined the free energy change for adsorbing a NP to one-phase liquid-disordered and one-phase liquid-ordered bilayers. The simulations indicate that NP adsorption depends on a competition between favorable NP-lipid interactions and the unfavorable curvature deformation of the bilayer, resulting in stronger interactions with the liquid-disordered bilayer due to its lower bending modulus. We then measured the free energy change associated with moving a NP across the surface of a phase-separated bilayer and identified a free energy minimum at the phase boundary. The free energy minimum is attributed to the thickness gradient between the two phases that enables favorable NP-lipid interactions without necessitating large curvature deformations. The simulation results thus indicate that the intrinsic curvature present at phase boundaries drives preferential interactions with surface-adsorbed NPs, providing new insight into the forces that drive NP behavior at multicomponent, phase-separated lipid bilayers.
机译:理解之间的交互surface-functionalized金纳米粒子(NPs)和脂质影响指导是必要的NPs为生物医学应用程序的设计。实验发现,阳离子NPs吸附更多强烈分离的多组分脂质影响比单组分liquid-disordered影响,这表明相分离影响NP-bilayer交互。使用粗粒度的分子动力学模拟探讨脂质相行为的影响小阳离子NPs的吸附。确定吸附的自由能变化NP单阶段liquid-disordered和单阶段liquid-ordered影响。, NP吸附取决于竞争和有利NP-lipid之间交互不利的双分子层的弯曲变形,导致更强的相互作用liquid-disordered双分子层由于其低弯曲模量。改变与NP在移动表面分离的双分子层确定了自由能最低的阶段边界。两个阶段之间的厚度梯度使有利NP-lipid交互不需要大曲率变形。表明内在曲率出席相边界驱动优惠交互与surface-adsorbed NPs,提供新的见解的力量驱动NP行为多组分,乳剂的脂质影响。

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