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A study on self-insertion of peptides into single-walled carbon nanotubes based on molecular dynamics simulation

机译:基于分子动力学模拟的基于分子动力学模拟的单壁碳纳米管自插入肽的研究

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Molecular dynamics simulation is performed to investigate self-insertion behaviors of peptides into single-walled carbon nanotubes (SWCNTs) in water environment. Peptides of different hydrophobicities and varied lengths are tested to show that the propensities of peptides to self-insert into SWCNTs differ drastically. Our results indicate that there exists a potential well for the system of SWCNT and peptide that is able to self-insert into the nanotube. Further investigations of energy components demonstrate that electrostatic interactions, combined with van der Waals interactions, play dominant roles in the self-insertion of peptides into nanotubes. In addition, we also observe a significant correlation between the propensity of a peptide to insert into nanotube and its hydrophobicity. Such results provide valuable information on the potential applications of carbon nanotubes in the fields of drug delivery, drug design and protein control, etc.
机译:进行分子动力学模拟以研究水环境中肽的自插入行为进入单壁碳纳米管(SWCNT)。 测试不同疏水性和变化的长度的肽,表明肽与自插入到SWCNT的施力急剧差异。 我们的结果表明,对于能够自插入纳米管的SWCNT和肽的系统存在良好。 进一步调查能量分量表明静电相互作用与范德华相互作用相结合,在肽的自插入肽中起显性作用在纳米管中起。 此外,我们还观察到肽的倾向与纳米管和其疏水性之间的显着相关性。 这些结果提供了有关碳纳米管在药物递送,药物设计和蛋白质对照领域的潜在应用的有价值信息。

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