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首页> 外文期刊>Chemical Physics Letters >Trans-Platinum anticancer drug AMD443: A detailed theoretical study by DFT-TST method on the hydrolysis mechanism
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Trans-Platinum anticancer drug AMD443: A detailed theoretical study by DFT-TST method on the hydrolysis mechanism

机译:反铂抗癌药AMD443:DFT-TST方法对水解机理的详细理论研究

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摘要

The two-step hydrolysis of trans-[PtCl_2(NH_3)(2 picoline)], AMD443, a novel anticancer drug has been investigated using density functional theory (DFT) with and without a number of explicit solvent molecules. Pentacoordinated trigonal-bipyramidal (TBP)-like structure transition state (TS) along with other stationary points on potential energy surface were optimized and characterized. To obtain accurate energies for the reaction surfaces, single-point energies were calculated by conductor-like polarisable calculation model (CPCM) using larger basis sets. Significant differences in the geometry and position of the TBP transition state are found between explicitly solvated and gas phase structures. The computed values of rate constant of different steps are in good agreement with the available experimental results.
机译:反式-[PtCl_2(NH_3)(2甲基吡啶)] AMD443的两步水解过程已使用密度泛函理论(DFT)研究了有无明显溶剂分子的新型抗癌药物。优化并表征了五配位三角双锥体(TBP)样结构过渡态(TS)以及势能表面上的其他固定点。为了获得反应表面的准确能量,通过导体样可极化计算模型(CPCM)使用较大的基集来计算单点能量。发现在明显溶剂化的和气相结构之间,TBP过渡态的几何形状和位置存在显着差异。不同步骤的速率常数的计算值与现有的实验结果非常吻合。

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