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新型钯(II)和金(III)配合物的晶体设计、抗肿瘤活性及分子对接研究:含硫代半卡巴腙配体。

Crystal Design, Antitumor Activity and Molecular Docking of Novel Palladium(II) and Gold(III) Complexes with a Thiosemicarbazone Ligand.

机构信息

University of Brasilia, Institute of Chemistry, Laboratory of Inorganic Synthesis and Crystallography, Brasília 70904-970, Brazil.

University of Brasilia, Institute of Chemistry, Laboratory of Computational Chemistry, Brasília 70904-970, Brazil.

出版信息

Int J Mol Sci. 2023 Jul 14;24(14):11442. doi: 10.3390/ijms241411442.

Abstract

The current research describes the synthesis and characterization of 2-acetylpyridine N(4)-cyclohexyl-thiosemicarbazone ligand (HL) and their two metal complexes, [Au(L)Cl][AuCl] and [Pd(L)Cl]·DMF . The molecular structures of the compounds were determined by physicochemical and spectroscopic methods. Single crystal X-ray diffraction was employed in the structural elucidation of the new complexes. The complexes showed a square planar geometry to the metal center Au(III) and Pd(II), coordinated with a thiosemicarbazone molecule by the -donor system and a chloride ion. Complex also shows the [AuCl] counter-ion in the asymmetric unit, and complex has one DMF solvent molecule. These molecules play a key role in the formation of supramolecular structures due to different interactions. Noncovalent interactions were investigated through the 3D Hirshfeld surface by the function and the 2D fingerprint plots. The biological activity of the compounds was evaluated in vitro against the human glioma U251 cells. The cytotoxicity results revealed great antitumor activity in complex compared with complex and the free ligand. Molecular docking simulations were used to predict interactions and properties with selected proteins and DNA of the synthesized compounds.

摘要

本研究描述了 2-乙酰吡啶 N(4)-环己基-缩氨硫脲配体(HL)及其两个金属配合物[Au(L)Cl][AuCl]和[Pd(L)Cl]·DMF 的合成与表征。通过物理化学和光谱方法确定了化合物的分子结构。单晶 X 射线衍射用于新配合物的结构阐明。配合物显示金属中心 Au(III)和 Pd(II)的正方形平面几何构型,通过-供体系统和氯离子与缩氨硫脲分子配位。配合物还在不对称单元中显示[AuCl]反离子,配合物有一个 DMF 溶剂分子。由于不同的相互作用,这些分子在超分子结构的形成中起着关键作用。通过 3D Hirshfeld 表面分析 函数和 2D 指纹图研究了非共价相互作用。评估了化合物在体外对人神经胶质瘤 U251 细胞的生物活性。细胞毒性结果表明,与配合物和游离配体相比,配合物具有很强的抗肿瘤活性。分子对接模拟用于预测合成化合物与选定蛋白质和 DNA 的相互作用和性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e464/10380234/6b3e5ef72e07/ijms-24-11442-g001.jpg

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