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银纳米线驱动下顺铂抗癌药物从碳、氮化硼和碳化硅纳米管中的释放:一项全面的分子动力学研究

Delivery of Cisplatin Anti-Cancer Drug from Carbon, Boron Nitride, and Silicon Carbide Nanotubes Forced by Ag-Nanowire: A Comprehensive Molecular Dynamics Study.

作者信息

Mehrjouei Esmat, Akbarzadeh Hamed, Shamkhali Amir Nasser, Abbaspour Mohsen, Salemi Sirous, Abdi Pooya

机构信息

Department of Chemistry, Faculty of Basic Sciences, Hakim Sabzevari University , 96179-76487 Sabzevar, Iran.

Department of Chemistry, Faculty of Science, University of Mohaghegh Ardabili , 56199-11367 Ardabil, Iran.

出版信息

Mol Pharm. 2017 Jul 3;14(7):2273-2284. doi: 10.1021/acs.molpharmaceut.7b00106. Epub 2017 Jun 15.

Abstract

In this work, liberation of cisplatin molecules from interior of a nanotube due to entrance of an Ag-nanowire inside it was simulated by classical molecular dynamics method. The aim of this simulation was investigation on the effects of diameter, chirality, and composition of the nanotube, as well as the influence of temperature on this process. For this purpose, single walled carbon, boron nitride, and silicon carbide nanotube were considered. In order for a more concise comparison of the results, a new parameter namely efficiency of drug release, was introduced. The results demonstrated that the efficiency of drug release is sensitive to its adsorption on outer surface of the nanotube. Moreover, this efficiency is also sensitive to the nanotube composition and its diameter. For the effect of nanotube composition, the results indicated that silicon carbide nanotube has the least efficiency for drug release, due to its strong drug-nanotube. Also, the most important acting forces on drug delivery are van der Waals interactions. Finally, the kinetic of drug release is fast and is not related to the structural parameters of the nanotube and temperature, significantly.

摘要

在这项工作中,利用经典分子动力学方法模拟了由于银纳米线进入纳米管内部而导致顺铂分子从纳米管内部释放的过程。该模拟的目的是研究纳米管的直径、手性和组成的影响,以及温度对这一过程的影响。为此,考虑了单壁碳纳米管、氮化硼纳米管和碳化硅纳米管。为了更简洁地比较结果,引入了一个新参数,即药物释放效率。结果表明,药物释放效率对其在纳米管外表面的吸附很敏感。此外,该效率对纳米管组成及其直径也很敏感。关于纳米管组成的影响,结果表明碳化硅纳米管的药物释放效率最低,因为其与药物的相互作用很强。而且,药物递送中最重要的作用力是范德华相互作用。最后,药物释放动力学很快,并且与纳米管的结构参数和温度没有显著关系。

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