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铜(II)Schiff 碱配合物来源于水杨醛席夫碱配体:结构研究、Hirshfeld 表面分析、抗癌和抗 SARS-CoV-2。

Copper(II) Schiff base complex derived from salen ligand: structural investigation, Hirshfeld surface analysis, anticancer and anti-SARS-CoV-2.

机构信息

Department of Chemistry, National Institute of Technology Patna, Patna, Bihar, India.

出版信息

J Biomol Struct Dyn. 2023 Jul;41(11):4957-4980. doi: 10.1080/07391102.2022.2076155. Epub 2022 May 23.

DOI:10.1080/07391102.2022.2076155
PMID:35604068
Abstract

This work deals with the synthesis and characterization of copper(II) complex Cu(salen)(HO) of salen-type Schiff base ligand derived from the condensation of 5-bromo-2-hydroxy-3-methoxybenzaldehyde and ethylenediamine in EtOH. This complex was characterized by different spectroscopic and physicochemical methods. Single crystal X-ray crystallography study revealed that Cu(II) in complex () is five-coordinate and adopts a distorted square pyramidal geometry. A DFT calculation was employed to evaluate the optimized electronic structure, HOMO-LUMO, energy gap, and global parameters. A detailed structural and non-covalent interaction on the complex is investigated by single crystal structure analysis and computational approaches. The strength of the interaction and 3D topology of the crystal packing are visualized through an energy framework. Hirshfeld surface and 2D fingerprint plots have been explored in the crystal structure of the complex. The anticancer properties of copper(II) complex was studied against the selected cancerous cell lines of breast cancer, cervical cancer, colon cancer and hepatocellular carcinoma. Additionally, molecular docking and MD simulations was performed on the complex to predict the binding mode and interactions between the ligand and the main protease of the SARS-CoV-2 (PDB ID: 7CBT and 7D1M). The molecular docking calculations of the complex () with SARS-CoV-2 virus revealed the binding energy of -8.1 kcal/mol and -7.5 kcal/mol with an inhibition constant of 3.245 µM and 2.318 µM at inhibition binding site of receptor towards 7CBT and 7D1M main protease (M), respectively. Besides this, molecular docking results (-7.6 kcal/mol, 3.196 µM) towards PBP2 targets (PDB ID: 6G9S) was also studied.Communicated by Ramaswamy H. Sarma.

摘要

这项工作涉及到铜(II)配合物Cu(salen)(HO)的合成和表征,该配合物是由 5-溴-2-羟基-3-甲氧基苯甲醛和乙二胺在乙醇中缩合得到的 salen 型希夫碱配体。该配合物通过不同的光谱和物理化学方法进行了表征。单晶 X 射线晶体学研究表明,配合物()中的 Cu(II)是五配位的,采用扭曲的四方锥几何形状。采用 DFT 计算评估了优化的电子结构、HOMO-LUMO、能隙和全局参数。通过单晶结构分析和计算方法研究了配合物的详细结构和非共价相互作用。通过能量框架可视化了配合物晶体堆积的相互作用强度和 3D 拓扑结构。在配合物的晶体结构中探索了 Hirshfeld 表面和二维指纹图。研究了铜(II)配合物对选定的乳腺癌、宫颈癌、结肠癌和肝癌癌细胞系的抗癌性能。此外,还对配合物进行了分子对接和 MD 模拟,以预测配体与 SARS-CoV-2(PDB ID:7CBT 和 7D1M)主要蛋白酶之间的结合模式和相互作用。配合物()与 SARS-CoV-2 病毒的分子对接计算显示,其与受体结合位点的结合能分别为-8.1 kcal/mol 和-7.5 kcal/mol,抑制常数分别为 3.245 μM 和 2.318 μM。此外,还研究了对 7CBT 和 7D1M 主蛋白酶(M)的抑制结合位点的-7.6 kcal/mol 和 3.196 μM 的分子对接结果。此外,还研究了对 PBP2 靶标(PDB ID:6G9S)的-7.6 kcal/mol 和 3.196 μM 的分子对接结果。

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