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二棕榈酰磷脂酰胆碱与碳纳米管的超分子自组装:耗散粒子动力学模拟研究

Supramolecular Self-Assembly of Dipalmitoylphosphatidylcholine and Carbon Nanotubes: A Dissipative Particle Dynamics Simulation Study.

作者信息

Keshtkar Mahboube, Mehdipour Nargess, Eslami Hossein

机构信息

Department of Chemistry, College of Sciences, Persian Gulf University, Boushehr 75168, Iran.

出版信息

Nanomaterials (Basel). 2022 Aug 2;12(15):2653. doi: 10.3390/nano12152653.

Abstract

Dissipative particle dynamics simulations were performed to investigate the self-assembly of dipalmitoylphosphatidylcholine (DPPC) as a model lipid membrane on the surface of carbon nanotubes (CNTs). The influence of surface curvature of CNTs on self-assembly was investigated by performing simulations on solutions of DPPC in water in contact with CNTs of different diameters: CNT (10, 10), CNT (14, 14), CNT (20, 20), and CNT (34, 34). DPPC solutions with a wide range of concentrations were chosen to allow for formation of lipid structures of various surface densities, ranging from a submonolayer to a well-organized monolayer and a CNT covered with a lipid monolayer immersed in a planar lipid bilayer. Our results are indicative of a sequence of phase-ordering processes for DPPC on the surface of CNTs. At low surface coverages, the majority of hydrocarbon tail groups of DPPC are in contact with the CNT surface. Increasing the surface coverage leads to the formation of hemimicellar aggregates, and at high surface coverages close to the saturation limit, an organized lipid monolayer self-assembles. An examination of the mechanism of self-assembly reveals a two-step mechanism. The first step involves densification of DPPC on the CNT surface. Here, the lipid molecules do not adopt the order of the target phase (lipid monolayer on the CNT surface). In the second step, when the lipid density on the CNT surface is above a threshold value (close to saturation), the lipid molecules reorient themselves to form an organized monolayer around the tube. Here, the DPPC molecules adopt stretched conformations normal to the surface, the end hydrocarbon groups adsorb on the surface, and the head groups occupy the outermost part of the monolayer. The saturation density and the degree of lipid ordering on the CNT surface depend on the surface curvature. The saturation density increases with increased surface curvature, and better-ordered structures are formed on less curved surfaces.

摘要

进行耗散粒子动力学模拟,以研究作为模型脂膜的二棕榈酰磷脂酰胆碱(DPPC)在碳纳米管(CNT)表面的自组装。通过对与不同直径的碳纳米管(CNT(10, 10)、CNT(14, 14)、CNT(20, 20)和CNT(34, 34))接触的水中DPPC溶液进行模拟,研究了碳纳米管表面曲率对自组装的影响。选择了具有广泛浓度范围的DPPC溶液,以允许形成各种表面密度的脂质结构,范围从亚单层到有序的单层,以及被脂质单层覆盖并浸入平面脂质双层中的碳纳米管。我们的结果表明DPPC在碳纳米管表面存在一系列相序过程。在低表面覆盖率下,DPPC的大多数烃尾基团与碳纳米管表面接触。增加表面覆盖率会导致形成半胶束聚集体,而在接近饱和极限的高表面覆盖率下,会自组装形成有序的脂质单层。对自组装机制的研究揭示了一个两步机制。第一步涉及DPPC在碳纳米管表面的致密化。在这里,脂质分子不采用目标相(碳纳米管表面的脂质单层)的顺序。在第二步中,当碳纳米管表面的脂质密度高于阈值(接近饱和)时,脂质分子重新定向自身,在管周围形成有序的单层。在这里,DPPC分子采用垂直于表面的伸展构象,末端烃基团吸附在表面,头部基团占据单层的最外层部分。碳纳米管表面的饱和密度和脂质有序度取决于表面曲率。饱和密度随着表面曲率的增加而增加,并且在曲率较小的表面上形成更有序的结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72a0/9370663/811afa74acea/nanomaterials-12-02653-g001.jpg

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