DFT Simulation of Geometry and Electronic Structure of Fullerenol - Cisplatin Conjugate as Agent of Cancer Therapy

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
A. Pushkarchuk, T. V. Bezyazychnaya, V. Potkin, E. Dikusar, A. Soldatov, S. Kilin, A. Nizovtsev, S. Kutsen, V. Pushkarchuk, Dominik Ludewig Michels, D. Lyakhov, V. Kulchitsky
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Abstract

Fully optimized structures of the fullerenol (Fl=C60(OH)24) - cisplatin conjugate (Fl + Cis) were obtained using the DFT simulation. The DFT/B3LYP/SV/Lanl2DZ level of theory has been used. From the results of calculation of the structural parameters, it can be concluded, that the interaction of Fl with Cis in vacuum leads to the increase of the Pt-N bond length compared to the result for Cis and decrease of the Pt-Cl bond length. The solvation effect for the Fl + Cis complex leads to the decrease of the Pt-N bond length compared to the result for vacuum and increase of the Pt-Cl bond length compared to the result for vacuum and increase of the Pt-Cl bond length compared to the result for vacuum. From the results of the calculation of structural parameters for the Fl with Cis conjugate, it can be concluded that the Pt-N bond in the aqueous solution is enhanced while the Pt-Cl bond is weakened, which can affect the biological activity of the Cis in this complex. The influence of the localization of HOMO and LUMO orbitals on the biological activity of the conjugate under consideration was analyzed. The paper presents the results of DFT simulation of the atomic and electronic structure of water-soluble cisplatin conjugate derivatives and nanocarbon structures, such as fullerenol Fl, as well as the results of studying the possible mechanisms of their biological activity.
抗癌药物富勒烯醇-顺铂偶联物的几何和电子结构的DFT模拟
使用DFT模拟获得了富勒烯醇(Fl=C60(OH)24)-顺铂缀合物(Fl+Cis)的完全优化的结构。使用了DFT/B3LYP/SV/Lanl2DZ理论水平。从结构参数的计算结果可以得出结论,与Cis的结果相比,Fl与Cis在真空中的相互作用导致Pt-N键长增加,而Pt-Cl键长减小。Fl+Cis络合物的溶剂化效应导致Pt-N键长与真空结果相比减小,Pt-Cl键长与抽真空结果相比增大。从Fl与Cis偶联物的结构参数计算结果可以得出结论,水溶液中的Pt-N键增强,而Pt-Cl键减弱,这会影响Cis在该复合物中的生物活性。分析了HOMO和LUMO轨道的局域化对所考虑的共轭物的生物活性的影响。本文介绍了水溶性顺铂偶联衍生物和富勒烯醇-Fl等纳米碳结构的原子和电子结构的DFT模拟结果,以及研究其生物活性可能机制的结果。
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来源期刊
Nonlinear Phenomena in Complex Systems
Nonlinear Phenomena in Complex Systems PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.90
自引率
25.00%
发文量
32
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