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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Synthesis, structure, polyphenol oxidase mimicking and bactericidal activity of a zinc-schiff base complex
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Synthesis, structure, polyphenol oxidase mimicking and bactericidal activity of a zinc-schiff base complex

机译:合成,结构,多酚氧化酶模拟和锌 - 席氏碱基复合物的杀菌活性

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Focusing on the important biological functions of metallo-enzymes and metallo-therapeutics in living world, this research work demonstrates the synthesis, crystal structure, supramolecular architecture, 4-methylcatechol oxidation and bactericidal activity of an interesting zinc-Schiff base complex, [Zn (HL)(2)Cl-2] (1), [Schiff base (HL) = 2-(2-methoxybenzylideneamino)phenol]. Crystal structure analysis of the zinc-Schiff base reveals that zinc centre exists in a distorted tetrahedral geometry. The Schiff base adopts three donor centres, however it gets protonated to exist in a zwitter ionic form and behaves as a monodentate coordinator in 1. This zinc-Schiff base complex has been examined towards the biomimetic oxidation of 4-methylcatechol (4-MC) in methanol and portrays its good efficacy with good turnover number, 1.45 x 10(3) h(-1). Electro-chemical study, electron paramagnetic resonance analysis and electrospray ionization mass spectrometry results for the zinc-Schiff base complex in presence of 4-MC ensures that the catalytic reaction undergoes through enzyme-substrate binding, and generation of radical in the course of catalysis drives the catalytic oxidation of 4-MC. Antibacterial study has also been performed against few clinical pathogens (Bacillus SP, Enterococcus, and E. coli). Scanning electron microscope and EDAX analysis for the pathogen with little dose of zinc complex confirms the destruction of bacterial cell membrane with 1.44% occurrence of zinc in the selected zone of inhibition area. This observation holds a great promise to develop future antibacterial agent. (C) 2020 Elsevier Ltd. All rights reserved.
机译:围绕金属酶和金属疗法在生活世界中的重要生物学功能,本研究工作展示了一种有趣的锌席夫碱络合物[Zn(HL)(2)Cl-2](1),[Schiff碱(HL)=2-(2-甲氧基苄叉氨基)苯酚]的合成、晶体结构、超分子结构、4-甲基邻苯二酚氧化和杀菌活性。锌席夫碱的晶体结构分析表明,锌中心呈扭曲的四面体结构。希夫碱采用三个供体中心,但它被质子化以两性离子形式存在,并在1中表现为单齿配位体。这种锌席夫碱复合物在甲醇中仿生氧化4-甲基邻苯二酚(4-MC)的研究表明,其具有良好的转化率,1.45 x 10(3)h(-1)。4-MC存在下锌席夫碱络合物的电化学研究、电子顺磁共振分析和电喷雾电离质谱结果确保催化反应通过酶-底物结合进行,催化过程中自由基的生成驱动4-MC的催化氧化。对少数临床病原体(芽孢杆菌、肠球菌和大肠杆菌)也进行了抗菌研究。对含有小剂量锌络合物的病原体进行扫描电子显微镜和EDAX分析,证实细菌细胞膜被破坏,在选定的抑制区内,锌的出现率为1.44%。这一观察结果对未来抗菌剂的开发有很大的希望。(C) 2020爱思唯尔有限公司版权所有。

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