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DFT 模拟 9-氨基吖啶半三明治钌(II)、铑(III)和铱(III)抗肿瘤配合物的结构和光学性质及其与 DNA 的相互作用。

DFT Simulation of Structural and Optical Properties of 9-Aminoacridine Half-Sandwich Ru(II), Rh(III), and Ir(III) Antitumoral Complexes and Their Interaction with DNA.

机构信息

Bioinformatics and High Performance Computing Research Group (BIO-HPC), Universidad Católica San Antonio de Murcia (UCAM) , Campus de los Jerónimos, 30107 Murcia, Spain.

出版信息

J Chem Theory Comput. 2017 Aug 8;13(8):3898-3910. doi: 10.1021/acs.jctc.7b00139. Epub 2017 Jul 6.

DOI:10.1021/acs.jctc.7b00139
PMID:28641006
Abstract

In this work, we use DFT-based methods to simulate the chemical structures, optical properties, and interaction with DNA of a recently synthesized chelated C^N 9-aminoacridine arene Ru(II) anticancer agent and two new closely related Rh(III) and Ir(III) complexes using DFT-based methods. Four chemical models and a number of theoretical approaches, which representatively include the PBE0, B97D, ωB97X, ωB97X-D, M06, and M06-L density functionals and the LANL2DZ, def2-SVP, and def2-TZVP basis sets, are tested. The best overall accuracy/cost performance for the optimization process is reached at the ωB97X-D/def2-SVP and M06/def2-SVP levels of theory. Inclusion of explicit solvent molecules (CHCl) further refines the geometry, while taking into account the crystal network gives no significant improvements of the computed bond distances and angles. The analysis of the excited states reveals that the M06 level matches better the experimental absorption spectra, compared to ωB97X-D. The use of the M06/def2-SVP approach is therefore a well-balanced method to study theoretically the bioactivity of this type of antitumoral complexes, so we couple this TD-DFT approach to molecular dynamics simulations in order to assess their reactivity with DNA. The reported results demonstrate that these drugs could be used to inject electrons into DNA, which might broaden their applications in photoactivated chemotherapy and as new materials for DNA-based electrochemical nanodevices.

摘要

在这项工作中,我们使用基于密度泛函理论(DFT)的方法模拟了一种最近合成的螯合 C^N 9-氨基吖啶芳基钌(II)抗癌剂以及两个新的密切相关的 Rh(III)和 Ir(III)配合物的化学结构、光学性质和与 DNA 的相互作用。我们测试了四个化学模型和多种理论方法,这些方法代表性地包括 PBE0、B97D、ωB97X、ωB97X-D、M06 和 M06-L 密度泛函以及 LANL2DZ、def2-SVP 和 def2-TZVP 基组。在 ωB97X-D/def2-SVP 和 M06/def2-SVP 理论水平上,优化过程达到了最佳的整体准确性/成本性能。包含显式溶剂分子(CHCl)进一步优化了几何形状,而考虑晶体网络对计算得到的键长和键角没有显著改善。激发态的分析表明,与 ωB97X-D 相比,M06 水平更好地匹配了实验吸收光谱。因此,使用 M06/def2-SVP 方法是研究此类抗肿瘤配合物生物活性的一种良好平衡的方法,因此我们将这种 TD-DFT 方法与分子动力学模拟相结合,以评估它们与 DNA 的反应性。报告的结果表明,这些药物可用于向 DNA 注入电子,这可能拓宽它们在光激活化疗中的应用,并作为基于 DNA 的电化学纳米器件的新材料。

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