首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Mixed ligand copper(II) complexes of phenanthroline/bipyridyl and curcumin diketimines as DNA intercalators and their electrochemical behavior under Nafion and clay modified electrodes
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Mixed ligand copper(II) complexes of phenanthroline/bipyridyl and curcumin diketimines as DNA intercalators and their electrochemical behavior under Nafion and clay modified electrodes

机译:邻菲咯啉/联吡啶和姜黄素二酮亚胺混合配体铜(II)配合物作为DNA嵌入剂及其在Nafion和粘土修饰电极下的电化学行为

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摘要

The mode of binding of copper(II) mixed ligand complexes of phen/bpy and Knoevenagel condensate of curcumin (4-salicylidene-1,7-bis(4-hydroxy-3-methoxyphenyl)-1,6-heptadiene-3,5-dion e) and 4-X-anilines with herring sperm DNA has been investigated using spectral and electrochemical techniques in Tris-HCl buffer pH 7.1. On titration with DNA, usual hypochromism and unusual (large) red shift (30-35 nm) for some of these complexes were observed in their absorption spectra of intense intraligand (IL) pi-pi* transition around 420 nm. Variations in the absorbance due to their interaction with DNA on time scale were also investigated, under fixed concentrations of complex and DNA. On interaction with DNA, the quasi-reversible CuII/I redox couple slightly improves its reversibility with considerable decrease in current intensity. The intercalation of these copper complexes into the DNA base pairs was also investigated by gel retardation assay method. All the experimental results indicate that the phen mixed copper(II) complexes intercalate more effectively into the DNA base pairs than their bpy counterparts. Significant differences in the redox behavior of these copper(II) complexes under electrochemically modified GC electrodes with Nafion and K10 Montmorillonite clay have also been investigated and discussed.
机译:姜黄素(4-水杨基-1,7-双(4-羟基-3-甲氧基苯基)-1,6-庚二烯-3,5)的phen / bpy铜(II)混合配体配合物与Knoevenagel缩合物的结合方式-e离子和带有鲱鱼精子DNA的4-X-苯胺已经在Tris-HCl缓冲液pH 7.1中使用光谱和电化学技术进行了研究。用DNA滴定时,在它们的强配体内(IL)pi-pi *跃迁在420 nm附近的吸收光谱中,观察到这些复合物中的一些通常的变色现象和不寻常的(大)红移(30-35 nm)。还研究了在固定浓度的复合物和DNA下,吸光度由于与DNA相互作用而引起的吸光度变化。与DNA相互作用时,准可逆的CuII / I氧化还原对略微提高了其可逆性,电流强度大大降低。还通过凝胶阻滞测定法研究了将这些铜络合物插入DNA碱基对中。所有实验结果表明,与bpy对应物相比,phen混合铜(II)配合物更有效地插入DNA碱基对中。这些铜(II)配合物与Nafion和K10蒙脱土的电化学修饰GC电极在氧化还原行为方面的显着差异也已进行了研究和讨论。

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