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Molecular dynamics simulations of adsorption of long pyrene-PEG chains on a thin carbon nanotube

机译:碳纳米管上长pyr-PEG链吸附的分子动力学模拟

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Carbon nanotubes have emerged as highly promising theranostic agents due to their unique structural/physical features, high surface area, and high drug-loading capacity. The high cytotoxicity of carbon nanotubes can be eliminated by noncovalent coating using hydrophilic polymers. We investigated the adsorption of long pyrene functionalized polyethylene glycol (PEG) chains, PEG$_{2000}$ and PEG$_{5000}$, on a single-walled carbon nanotube (SWNT) from a crowded solution. Full-atom molecular dynamics simulations in explicit water were used to mimic the experimental conditions of noncovalent PEGylation with a stoichiometry of one SWNT to ten pyrene-PEG. Although the diffusional behavior of the pyrene molecules still attached to the polymers did not change according to chain length, the adsorption rate for pyrene-PEG$_{2000}$ to the SWNT was higher than that for pyrene-PEG$_{5000}$ chains. Here longer chains sterically hindered the adsorption of pyrene groups on the SWNT surface. Once adsorbed, pyrene molecules stayed on the SWNT surface even though they frequently adopted different orientations that may weaken their $pi -pi $ stacking interactions with the nanotube surface.
机译:碳纳米管因其独特的结构/物理特征,高表面积和高载药量而成为极有希望的治疗剂。碳纳米管的高细胞毒性可以通过使用亲水性聚合物的非共价涂层来消除。我们研究了从拥挤的溶液中长ized官能化的聚乙二醇(PEG)链PEG $ _ {2000} $和PEG $ _ {5000} $的吸附在单壁碳纳米管(SWNT)上的情况。在显性水中使用全原子分子动力学模拟来模拟化学计量比为一个SWNT到十个pyr-PEG的非共价PEG化的实验条件。尽管仍附着在聚合物上的pyr分子的扩散行为不会根据链长而变化,但pyr-PEG $ _ {2000} $在SWNT上的吸附速率高于pyr-PEG $ _ {5000} $连锁店。在这里,较长的链在空间上阻碍了groups基在SWNT表面的吸附。 pyr分子一旦被吸附,即使它们经常采用不同的方向可能会减弱其与纳米管表面的surfaceπ$πpi堆积相互作用,但它们仍保留在SWNT表面上。

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