Laboratory for Inorganic and Bioinorganic Chemistry, Department of Chemistry, Faculty of Science, University of Sarajevo.
Acta Chim Slov. 2023 Mar 20;70(1):74-85. doi: 10.17344/acsi.2022.7826.
Two copper(II) complexes of 4-chloro- and 4-dimethylaminobenzaldehyde nicotinic acid hydrazones were prepared and characterized by elemental analysis, mass spectrometry, infrared and electron spectroscopy and conductometry. These rare examples of bis(hydrazonato)copper(II) complexes are neutral complex species with copper(II) center coordinated with two monoanionic bidentate O,N-donor hydrazone ligands coordinated in enol-imine form. The interaction of hydrazone ligands and corresponding copper(II) complexes with CT DNA and BSA was investigated. Copper(II) complexes are slightly effective in binding the DNA than pristine hydrazones. The results indicate groove binding or moderate intercalation which are not significantly affected by the nature of substituent at hydrazone ligands. On contrary, affinities of two copper(II) complexes toward BSA significantly differs and depends on the nature of the substituent, however in absence of thermodynamic data difference in nature of binding forces cannot be excluded. The complex bearing electron-withdrawing 4-chloro substituent has larger affinity toward BSA compared to 4-dimethyamino analogue. These findings were theoretically supported by molecular docking study.
两种 4-氯-和 4-二甲氨基苯甲醛烟酰腙的铜(II)配合物被制备并通过元素分析、质谱、红外和电子光谱以及电导率法进行了表征。这些罕见的双(腙基)铜(II)配合物是中性配合物,铜(II)中心与两个单阴离子双齿 O,N-供体腙配体配位,以烯醇-亚胺形式配位。研究了腙配体及其相应的铜(II)配合物与 CT-DNA 和 BSA 的相互作用。铜(II)配合物与 DNA 的结合能力略强于原始腙。结果表明,结合方式为沟槽结合或适度的嵌入,而这不受腙配体性质的显著影响。相反,两种铜(II)配合物与 BSA 的亲和力有显著差异,且取决于腙配体的性质,但在缺乏热力学数据的情况下,不能排除结合力性质的差异。与 4-二甲氨基类似物相比,带有吸电子 4-氯取代基的配合物对 BSA 具有更大的亲和力。这些发现得到了分子对接研究的理论支持。