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首页> 外文期刊>Medicinal chemistry research: an international journal for rapid communications on design and mechanisms of action of biologically active agents >Pyrazole-bridged late first row transition metal complexes derived from hexadentate compartmental ligand: synthesis, characterization, antibacterial activity, and DNA binding/cleavage studies
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Pyrazole-bridged late first row transition metal complexes derived from hexadentate compartmental ligand: synthesis, characterization, antibacterial activity, and DNA binding/cleavage studies

机译:吡唑桥联的六齿区室配体的第一排晚期过渡金属配合物:合成,表征,抗菌活性和DNA结合/裂解研究

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摘要

A series of binuclear Co~II, Ni~II, Cu~II, and Zn~II complexes having mu-1,2 diazine bridging have been prepared and characterized by various physicochemical methods. The hexadentate ligand is synthesized by condensing pyrazole-3,5-dicarbohydrazide with 2-hydrox-ynaphthaldehyde (LH3) in 1:2 ratio. All the complexes were found to be monomeric in nature with octahedral geometry and act as nonelectrolytes. Ligand and complexes were screened for antibacterial activity against Escherichia coli and made to interact with its DNA to investigate the binding/cleaving ability by absorption, hydrodynamic, thermal denaturation, and electrophoresis studies. An in-tercalative binding mode is predicted by the results. Gel electrophoresis data indicate cleavage of DNA to a greater extent by both ligand and complexes.
机译:已经制备了一系列具有mu-1,2二嗪桥联的双核Co〜II,Ni〜II,Cu〜II和Zn〜II配合物,并通过各种物理化学方法对其进行了表征。六齿配体是通过将吡唑-3,5-二乙酰肼与2-羟基-萘甲醛(LH3)以1:2的比例缩合而合成的。发现所有配合物本质上都是具有八面体几何形状的单体,并且可以作为非电解质。筛选配体和复合物对大肠杆菌的抗菌活性,并使其与DNA相互作用,通过吸收,流体动力学,热变性和电泳研究来研究其结合/裂解能力。结果预测了插入式结合模式。凝胶电泳数据表明配体和复合物都在更大程度上切割了DNA。

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