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四铂、沙铂及其衍生物与抗坏血酸的氧化还原电位:一项计算研究

Redox Potentials for Tetraplatin, Satraplatin, Its Derivatives, and Ascorbic Acid: A Computational Study.

作者信息

Šebesta Filip, Baxová Katarína, Burda Jaroslav V

机构信息

Department of Chemical Physics and Optics, Faculty of Mathematics and Physics, Charles University , Ke Karlovu 3, 121 16 Prague 2, Czech Republic.

出版信息

Inorg Chem. 2018 Feb 5;57(3):951-962. doi: 10.1021/acs.inorgchem.7b01894. Epub 2018 Jan 24.

Abstract

Redox potentials of the Pt(IV) complexes, such as satraplatin, tetraplatin, and several others, are determined at the density functional theory (DFT) level (with B3LYP, ω-B97XD, PBE1PBE, TPSSTPSS, M06-L, M11-L, and MN12-L functionals) and compared with post-Hartree-Fock methods MP2 and CCSD(T). Calculations are performed in water solution employing an implicit solvation model. The impact of replacement of a chloro ligand by a water molecule (hydration in the equatorial plane of the complexes) is also explored. Furthermore, an influence of solvent pH on the magnitude of the redox potentials is discussed for such hydrated complexes. The obtained results are compared with available experimental data leading to a root-mean-square deviation (RMSD) of ca. 0.23 V, using the CCSD(T)/6-31+G(d)/IEF-PCM/scaled-UAKS level. Distribution of the electron density is analyzed at the B3LYP/6-311++G(2df,2pd) level. Also, a correlation between binding energies of axial ligands and the redox potential is demonstrated. Since the Pt(IV) complexes are considered in the framework of anticancer treatment, possible reducing agents in bioenvironment are searched. From this reason, the reduction potential of different protonation states of ascorbic acid is also presented.

摘要

在密度泛函理论(DFT)水平(使用B3LYP、ω-B97XD、PBE1PBE、TPSSTPSS、M06-L、M11-L和MN12-L泛函)下测定了诸如沙铂、四铂等Pt(IV)配合物的氧化还原电位,并与后哈特里-福克方法MP2和CCSD(T)进行了比较。计算是在水溶液中采用隐式溶剂化模型进行的。还探讨了用一个水分子取代氯配体(配合物赤道面的水合作用)的影响。此外,还讨论了溶剂pH值对这种水合配合物氧化还原电位大小的影响。将所得结果与现有实验数据进行比较,在CCSD(T)/6-31+G(d)/IEF-PCM/缩放-UAKS水平下得到的均方根偏差(RMSD)约为0.23 V。在B3LYP/6-311++G(2df,2pd)水平下分析了电子密度分布。此外,还证明了轴向配体的结合能与氧化还原电位之间的相关性。由于Pt(IV)配合物是在抗癌治疗的框架内进行考虑的,因此在生物环境中寻找可能的还原剂。出于这个原因,还给出了抗坏血酸不同质子化状态的还原电位。

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