首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Spectral and redox studies on mixed ligand complexes of cobalt(III) phenanthroline/bipyridyl and benzoylhydrazones, their DNA binding and antimicrobial activity
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Spectral and redox studies on mixed ligand complexes of cobalt(III) phenanthroline/bipyridyl and benzoylhydrazones, their DNA binding and antimicrobial activity

机译:钴(III)菲咯啉/联吡啶和苯甲酰hydr的混合配体配合物的光谱和氧化还原研究,它们的DNA结合和抗菌活性

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Cobalt(III) complexes of the type [Co(N-N)2L](ClO4)2.H2O [where L=anionic form of para-substituted benzaldehyde-benzoylhydrazone (BHBX-); X=H, Me, OMe, OH, Cl or NO2; N-N=2,2'-bipyridine (bpy) or 1,10-phenanthroline (phen)] have been synthesized and characterized through UV-Vis, IR, NMR and electrochemical studies. The IR spectral frequencies support the mode of coordination of BHBX to the metal through the imino nitrogen and enolic oxygen atoms. The electronic absorption spectra exhibit metal to ligand charge transfer (MLCT) transition around 450 nm together with intraligand (IL) bands that are comparable to that of [Co(phen/bpy)3]3+. In acetonitrile solution these complexes show two well defined redox couples corresponding to Co(III/II) and Co(II/I) processes. Binding of these complexes with herring sperm DNA have been investigated by spectroscopic and voltammetric methods. The lower binding constant values of these complexes with respect to the [Co(phen/bpy)3]3+ are ascribed to the polar interaction of the substituted benzoylhydrazone moiety with the sugar-phosphate backbone of the DNA. The UV spectrum shows reasonable hypochromism with slight (2-4 nm) red shift, while the cyclic voltammogram shows decrease in current intensity along with a very small shift in the formal potential of the Co(III/II) redox couple. These experimental results indicate that phen mixed ligand complexes bind to DNA through an intercalative mode more effectively than their bpy counterparts. These complexes are also found to have good antimicrobial activity.
机译:[Co(N-N)2 L](ClO 4)2·H 2 O类型的钴(III)配合物[其中L =对位取代的苯甲醛-苯甲酰hydr的阴离子形式(BHBX-); X = H,Me,OMe,OH,Cl或NO2; N-N = 2,2'-联吡啶(bpy)或1,10-菲咯啉(phen)]已通过UV-Vis,IR,NMR和电化学研究进行了表征。红外光谱频率支持BHBX通过亚氨基氮和烯属氧原子与金属的配位模式。电子吸收光谱显示金属到配体的电荷转移(MLCT)跃迁在450 nm附近以及与[Co(phen / bpy)3] 3+相当的配体内(IL)带。在乙腈溶液中,这些配合物显示出两个定义明确的氧化还原对,分别对应于Co(III / II)和Co(II / I)过程。这些复合物与鲱鱼精子DNA的结合已通过光谱和伏安法进行了研究。这些复合物相对于[Co(phen / bpy)3] 3+的较低的结合常数值归因于取代的苯甲酰moiety部分与DNA的糖-磷酸主链的极性相互作用。紫外光谱显示出适度的变色现象,出现轻微的(2-4 nm)红移,而循环伏安图显示电流强度下降,而Co(III / II)氧化还原对的形式势很小。这些实验结果表明,与bpy对应物相比,phen混合配体复合物通过插入模式更有效地与DNA结合。还发现这些复合物具有良好的抗菌活性。

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