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首页> 外文期刊>Journal of Molecular Liquids >Probing the adsorption and release mechanisms of cytarabine anticancer drug on/from dopamine functionalized graphene oxide as a highly efficient drug delivery system
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Probing the adsorption and release mechanisms of cytarabine anticancer drug on/from dopamine functionalized graphene oxide as a highly efficient drug delivery system

机译:用高效药物递送系统探测糖酸抗癌药物/从多巴胺官能化石墨烯氧化物的吸附和释放机制

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In this work, the chemical modification of the graphene oxide surface was done via covalent functionalization with dopamine (fGO). The density functional theory (DFT) and molecular dynamics (MD) simulations were applied to study the adsorption of cytarabine (CYT) anticancer drugs on the fGO surface. The DFT calculations demonstrate that the adsorption energy for fGO/CYT complexes is negative which proposes the adsorption process of CYT molecule onto the fGO surface is energetically favorable and the optimized geometries are stable. The electronic and structural properties of cytarabine molecules interacting with fGO were studied using the DFT method. QTAIM calculations confirm the nature of interaction between CYT and fGO nano-sheet is partially covalent and partially electrostatic. It was found in the most stable configuration related to the CYT/fGO interaction, the hydrogen bond (HB) interactions predominate between the CYT molecule and the functional group of fGO. As well as, the MD simulations at various drug concentrations (3, 5, and 10) and in the water solution were examined to assess the dynamics of drug adsorption on the fGO surface. MD simulation results confirm that CYT drugs were strongly adsorbed on the fGO surface by increasing the drug concentration from 3 to 10 molecules, as confirmed by the high number of H-bonds between fGO and al- and the most negative van der Waals (vdW) and electrostatic interaction energies. Finally, the effect of pH in the adsorption and release of drug molecules from the fGO surface was investigated. (C) 2020 Elsevier B.V. All rights reserved.
机译:在这项工作中,通过与多巴胺(FGO)共价官能化进行石墨烯氧化物表面的化学改性。应用密度函数理论(DFT)和分子动力学(MD)模拟,用于研究对FGO表面的抗胰岛素(CYT)抗癌药物吸附。 DFT计算表明FGO / Cyt络合物的吸附能量是阴性,这提出了Cyt分子在FPO表面上的吸附过程能够充满活力,并且优化的几何形状是稳定的。使用DFT法研究了与FGO相互作用的糖氨碱分子的电子和结构性。 Qtaij计算证实了Cyt和FPO纳米片之间的相互作用的性质是部分共价和部分静电的。在与Cyt / Fgo相互作用有关的最稳定的配置中发现,氢键(Hb)相互作用占FOG分子和FPO官能团之间的相互作用。除了,检查各种药物浓度(3,5和10)和水溶液中的MD模拟,以评估FPO表面上吸毒吸附的动态。 MD仿真结果证实,通过增加3至10分子的药物浓度,通过增加3至10分子的药物浓度,通过增加FGO和AL-和最负面van der Waals(VDW)的H键证实,Cyt药物强烈吸附在FPO表面上。和静电相互作用能量。最后,研究了pH在来自FPO表面的吸附和释放药物分子中的pH的作用。 (c)2020 Elsevier B.v.保留所有权利。

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