首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Environmentally Friendly Fluoroquinolone Derivatives with Lower Plasma Protein Binding Rate Designed Using 3D-QSAR Molecular Docking and Molecular Dynamics Simulation
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Environmentally Friendly Fluoroquinolone Derivatives with Lower Plasma Protein Binding Rate Designed Using 3D-QSAR Molecular Docking and Molecular Dynamics Simulation

机译:环保氟喹诺酮衍生物采用3D-QSAR分子对接和分子动力学模拟设计较低的血浆蛋白结合速率

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摘要

Comparative molecular similarity index analysis (CoMSIA) was used to establish a three-dimensional quantitative structure–activity relationship (3D-QSAR) model with structural parameters of quinolones as the independent variables and plasma protein binding rate (logfb) as the dependent variable to predict the logfb values of remaining quinolones in this study. In addition, the mono-substituted and bis-substituted reaction schemes that significantly influenced the plasma protein binding rate of quinolones were determined through an analysis of the 3D-QSAR contour maps. It was found that the replacement of small groups, hydrophobic groups, electronegative groups, or hydrogen bond acceptor groups at the substitution sites significantly reduce the logfb values of quinolone derivatives. Furthermore, the mechanism of decrease in binding rate between trovafloxacin (TRO) derivatives and plasma protein was revealed qualitatively and quantitatively based on molecular docking and molecular dynamics simulation. After modification of the target molecule, 11 TRO derivatives with low plasma protein binding rates were screened (reduced by 0.50–24.18%). Compared with the target molecule, the molecular genotoxicity and photodegradability of the TRO derivatives was higher (genotoxicity increased by 4.89–21.36%, and photodegradability increased by 9.04–20.56%), and their bioconcentration was significantly lower (by 36.90–61.41%).
机译:比较分子相似性指数分析(COMSIA)用于建立三维定量结构 - 活性关系(3D-QSAR)模型,具有喹诺酮的结构参数,作为自变量和血浆蛋白结合率(LOGFB)作为预测的因变量本研究中剩余喹诺酮的LOGFB值。此外,通过对3D-QSAR等高图的分析来确定显着影响喹诺酮蛋白蛋白质结合率的单取代和双取代的反应方案。发现在取代部位的替代小组,疏水基团,电负责基团或氢键受体基团显着降低了喹诺酮衍生物的LOGFB值。此外,基于分子对接和分子动力学模拟,定性和定量地揭示了替洛昔洛辛(TRO)衍生物(TRO)衍生物和血浆蛋白之间结合率降低的机制。在修饰靶分子后,筛选11种具有低血浆蛋白结合率的基因衍生物(减少0.50-24.18%)。与靶分子相比,TRO衍生物的分子遗传毒性和光降解性更高(遗传毒性增加4.89-21.36%,光降解性增加了9.04-20.56%),它们的生物浓度显着降低(36.90-61.41%)。

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