首页> 外文期刊>Journal of molecular graphics & modelling >Probing the effect of polyethene glycol on the adsorption mechanisms of Gem on the hexagonal boron nitride as a highly efficient polymer-based drug delivery system: DFT, classical MD and Well-tempered Metadynamics simulations
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Probing the effect of polyethene glycol on the adsorption mechanisms of Gem on the hexagonal boron nitride as a highly efficient polymer-based drug delivery system: DFT, classical MD and Well-tempered Metadynamics simulations

机译:探讨聚乙二醇对六边形氮化物上宝石吸附机制的影响,作为高效高效的基于聚合物的药物递送系统:DFT,经典MD和脾脾脏的性能模拟

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摘要

The stability of Gemcitabine (Gem) anticancer drug on the hexagonal boron nitride (h-BN) and functionalized h-BN with polyethylene glycol (PEG-h-BN) as drug delivery carriers (DDSs) is investigated. The density functional theory (DFT) calculations, molecular dynamics (MD) simulation and Metadynamics simulations are used to study the nature of h-BN-Gem interactions as well as the role of PEG group to increase the efficiency of the DDS. The results of DFT calculations reveal that the drug physisorbed on the h-BN surface through the formation of pi-pi stacking with an adsorption energy range -15.08 kJ/mol to -90.74 kJ/mol. Moreover, the obtained results show that the grafting the PEG group to h-BN cause to pi-pi stacking is reinforced by the formation of strong HBs and leads to increase adsorption energy about 20%. There is a good agreement between DFT calculation and MD simulation results. Also, The MD simulations demonstrate in adsorption of the drug on the carriers, the contribution of van der Waals energy is more than the electrostatic energy. The well-tempered metadynamics simulations are performed to find the free energy surface (FES) of the studied systems. The FES for the Gem/h-BN and Gem/PEG-h-BN interfaces show the global minimum at around 3.0-6.0 angstrom and 1.2 angstrom, respectively. The orientational analysis proves that the global minimum can be related to the formation of pi-pi stacking and HB interaction. (C) 2020 Elsevier Inc. All rights reserved.
机译:研究了吉西他滨(GEM)抗癌药物在六边形氮化硼(H-BN)和具有聚乙二醇(PEG-H-BN)的官能化H-BN作为药物递送载体(DDS)的官能化H-Bn。密度函数理论(DFT)计算,分子动力学(MD)仿真和元动力学模拟用于研究H-BN-珠宝相互作用的性质以及PEG组提高DDS效率的作用。 DFT计算的结果表明,通过在吸附能量范围-15.08kJ / mol至-90.74kJ / mol至-90.74kJ / mol的情况下,通过形成PI-PI堆叠的药物在H-BN表面上吸收。此外,所得结果表明,通过形成强HBS,将PEG基团移植到H-BN原因对PI-PI堆叠增强,并导致增加吸附能量约20%。 DFT计算与MD仿真结果之间存在良好的一致性。而且,MD模拟表明在载体上吸附药物,范德瓦尔斯能量的贡献大于静电能量。进行耐高温的元动力学模拟,以找到所研究的系统的自由能表面(FES)。 GEM / H-BN和GEM / PEG-H-BN接口的FES分别显示出约3.0-6.0埃左右的全局最小值和1.2埃。取向分析证明了全局最小可能与PI-PI堆叠和HB相互作用的形成有关。 (c)2020 Elsevier Inc.保留所有权利。

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