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表面活性剂肽对非共价单壁碳纳米管功能化的分子动力学模拟

Molecular dynamics simulation of non-covalent single-walled carbon nanotube functionalization with surfactant peptides.

作者信息

Barzegar Abolfazl, Mansouri Alireza, Azamat Jafar

机构信息

Department of Biophysics, Research Institute for Fundamental Sciences, University of Tabriz, Tabriz, Iran; The School of Advanced Biomedical Sciences (SABS), Tabriz University of Medical Sciences, Tabriz, Iran.

Department of Biophysics, Research Institute for Fundamental Sciences, University of Tabriz, Tabriz, Iran.

出版信息

J Mol Graph Model. 2016 Mar;64:75-84. doi: 10.1016/j.jmgm.2016.01.003. Epub 2016 Jan 14.

Abstract

Non-covalent functionalized single-walled carbon nanotubes (SWCNTs) with improved solubility and biocompatibility can successfully transfer drugs, DNA, RNA, and proteins into the target cells. Theoretical studies such as molecular docking and molecular dynamics simulations in fully atomistic scale were used to investigate the hydrophobic and aromatic π-π-stacking interaction of designing four novel surfactant peptides for non-covalent functionalization of SWCNTs. The results indicated that the designed peptides have binding affinity towards SWCNT with constant interactions during MD simulation times, and it can even be improved by increasing the number of tryptophan residues. The aromatic content of the peptides plays a significant role in their adsorption in SWCNT wall. The data suggest that π-π stacking interaction between the aromatic rings of tryptophan and π electrons of SWCNTs is more important than hydrophobic effects for dispersing carbon nanotubes; nevertheless SWCNTs are strongly hydrophobic in front of smooth surfaces. The usage of aromatic content of peptides for forming SWCNT/peptide complex was proved successfully, providing new insight into peptide design strategies for future nano-biomedical applications.

摘要

具有改善的溶解性和生物相容性的非共价功能化单壁碳纳米管(SWCNTs)能够成功地将药物、DNA、RNA和蛋白质转运到靶细胞中。诸如全原子尺度的分子对接和分子动力学模拟等理论研究被用于研究设计四种用于SWCNTs非共价功能化的新型表面活性剂肽的疏水和芳香π-π堆积相互作用。结果表明,所设计的肽在MD模拟时间内对SWCNT具有结合亲和力且相互作用恒定,甚至可以通过增加色氨酸残基的数量来提高。肽的芳香含量在其在SWCNT壁上的吸附中起重要作用。数据表明,色氨酸芳香环与SWCNTs的π电子之间的π-π堆积相互作用对于分散碳纳米管比疏水作用更重要;然而,SWCNTs在光滑表面面前具有很强的疏水性。成功证明了利用肽的芳香含量形成SWCNT/肽复合物,为未来纳米生物医学应用的肽设计策略提供了新的见解。

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