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首页> 外文期刊>Russian Journal of Coordination Chemistry >Synthesis, crystal structure, properties, and nuclease activity of a new Cu(II) complex [Cu(L)(2)(Py)(2)(H2O)] (HL = N-(5-(4-methylphenyl)-[1,3,4]-thiadiazole-2-yl)toluenesulfonamide)
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Synthesis, crystal structure, properties, and nuclease activity of a new Cu(II) complex [Cu(L)(2)(Py)(2)(H2O)] (HL = N-(5-(4-methylphenyl)-[1,3,4]-thiadiazole-2-yl)toluenesulfonamide)

机译:新型Cu(II)配合物[Cu(L)(2)(Py)(2)(H2O)]的合成,晶体结构,性质和核酸酶活性(HL = N-(5-(4-甲基苯基)- [1,3,4]-噻二唑-2-基)甲苯磺酰胺)

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摘要

A new N-sulfonamide ligand, N-(5-(4-methylphenyl)-[1,3,4]-thiadiazole-2-yl)toluenesulfonamide (HL) and its Cu(II) complex [Cu(L)(2)(Py)(2)(H2O)] (I), have been synthesized. The X-ray crystal structure of the ligand and of complex I have been determined (CIF files CCDC nos. 975153 (HL), 851790 (I)). In I, the Cu2+ ion is five-coordinated, forming a CuN4O chromophore. The ligand acts as monodentate, coordinating the metal ion through a single N-thiadiazole atom. The molecules from the reaction medium (pyridine and water) are also involved in the coordination of the Cu2+ ion. Complex I has a slightly distorted square pyramidal geometry. The complex was characterized by FT-IR, electronic, EPR spectroscopic and magnetic methods. The nuclease activity studies of the synthesized complex confirm his capacity to cleavage the DNA molecule. The ligand has two important roles in the nuclease activity of I: it influence the reactivity of the Cu2+ ion and interact with DNA molecule. The complex interacts with the DNA molecule. Immediately, the Cu2+ ion is reduced to Cu(I), and in the presence of molecular oxygen the formed Cu(I) complex produces reactive oxygen species in close proximity to the double helix.
机译:一种新的N-磺酰胺配体N-(5-(4-甲基苯基)-[1,3,4]-噻二唑-2-基)甲苯磺酰胺(HL)及其Cu(II)络合物[Cu(L)(2 )(Py)(2)(H2O)](I)已合成。已经确定了配体和配合物I的X射线晶体结构(CIF文件,CCDC号975153(HL),851790(I))。在I中,Cu 2+离子是五配位的,形成CuN 4 O发色团。配体充当单齿,通过单个N-噻二唑原子配位金属离子。反应介质中的分子(吡啶和水)也与Cu2 +离子的配位有关。复合体I具有略微扭曲的方形金字塔形几何形状。该复合物通过FT-IR,电子,EPR光谱和磁性方法表征。合成的复合物的核酸酶活性研究证实了其裂解DNA分子的能力。配体在I的核酸酶活性中具有两个重要作用:它影响Cu2 +离子的反应性并与DNA分子相互作用。该复合物与DNA分子相互作用。立即,Cu2 +离子被还原为Cu(I),并且在分子氧的存在下,形成的Cu(I)络合物在双螺旋附近产生活性氧。

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