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棒状纳米粒子的膜包裹的非常规途径和与取向及膜包裹相关的纳米粒子相互作用。

An unusual pathway for the membrane wrapping of rodlike nanoparticles and the orientation- and membrane wrapping-dependent nanoparticle interaction.

机构信息

State Key Laboratory of Heavy Oil Processing, Center for Bioengineering and Biotechnology, China University of Petroleum (East China), Qingdao, 266580, China.

出版信息

Nanoscale. 2013 Oct 21;5(20):9888-96. doi: 10.1039/c3nr02683c.

Abstract

Although rapid progress has been made in understanding the interaction of nanoparticles (NPs) with lipid membrane, little is known about the interaction between neighboring NPs on the membrane. With the aid of computer simulation techniques, in this work we systematically investigate the membrane mediated interaction between anisotropic NPs with at least one dimension with the size of several nanometers, and find that the interaction between neighboring NPs is orientation- and membrane wrapping-dependent. For rodlike NPs with a weak NP-membrane adhesion strength that the membrane wrapping of NPs occurs at a slow rate and has a limited extent, the orientation-dependent interaction between two neighboring anisotropic NPs arises purely as a result of non-homogeneous distribution of membrane curvature induced by anisotropic NP adsorption. While for rodlike NPs with a strong NP-membrane adhesion, the rapid wrapping rate and extensive wrapping cause the different responses of upper and lower leaflets of the membrane to the NP adsorption, which force the NPs to enter the hydrophobic part of the membrane and lead to the formation of inverted micelles surrounding the NPs. The unusual asymmetrical wrapping also induces orientation-dependent NP interaction, which shows a short-range repulsion, intermediate-range attraction and long-range repulsion for rodlike NPs.

摘要

尽管在理解纳米颗粒 (NPs) 与脂质膜的相互作用方面已经取得了快速进展,但对于膜上相邻 NPs 之间的相互作用却知之甚少。在计算机模拟技术的帮助下,本工作系统地研究了具有至少一个几纳米大小维度的各向异性 NPs 与膜之间的膜介导相互作用,发现相邻 NPs 之间的相互作用取决于取向和膜包裹。对于 NP-膜粘附强度较弱的棒状 NPs,NP 的膜包裹发生的速度较慢且范围有限,两个相邻各向异性 NPs 之间的取向依赖性相互作用纯粹是由于各向异性 NP 吸附引起的膜曲率的非均匀分布所致。而对于 NP-膜粘附强度较强的棒状 NPs,快速的包裹速度和广泛的包裹导致膜的上下叶对 NP 吸附的不同响应,这迫使 NPs 进入膜的疏水区,并导致围绕 NPs 形成反胶束。这种不寻常的不对称包裹也会引起取向依赖性的 NP 相互作用,对于棒状 NPs 表现为短程排斥、中间程吸引和长程排斥。

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