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铜(II)双(1-吡唑基)甲烷配合物对活性氧的分解作用

Decomposition of reactive oxygen species by copper(II) bis(1-pyrazolyl)methane complexes.

作者信息

Schepetkin Igor, Potapov Andrei, Khlebnikov Andrei, Korotkova Elena, Lukina Anna, Malovichko Galina, Kirpotina Lilia, Quinn Mark T

机构信息

Department of Veterinary Molecular Biology, Montana State University, Bozeman, MT 59717, USA.

出版信息

J Biol Inorg Chem. 2006 Jun;11(4):499-513. doi: 10.1007/s00775-006-0101-1. Epub 2006 Apr 22.

Abstract

Two bis(1-pyrazolyl)alkane ligands, bis(3,5-dimethyl-1-pyrazolyl)methane and bis(4-iodo-3,5-dimethyl-1-pyrazolyl)methane, and their copper(II) complexes, bis(3,5-dimethyl-1-pyrazolyl)methanedinitratocopper(II) [CuL1(NO3)2] and bis(4-iodo-3,5-dimethyl-1-pyrazolyl)methanedinitratocopper(II) [CuL2(NO3)2] x 2H2O, were prepared. Physiochemical properties of the copper(II) complexes were studied by spectroscopic (UV-vis, IR, EPR) techniques and cyclic voltammetry. Spectroscopic analysis revealed a 1:1 stoichiometry of ligand:copper(II) ion and a bidentate coordination mode for the nitrate ions in both of the complexes. According to experimental and theoretical ab initio data, the copper(II) ion is located in an octahedral hexacoordinated environment. Both complexes were able to catalyze the dismutation of superoxide anion (O2*-) (pH 7.5) and decomposition of H2O2 (pH 7.5) and peroxynitrite (pH 10.9). In addition, both complexes exhibited superoxide dismutase (SOD) like activity toward extracellular and intracellular reactive oxygen species produced by activated human neutrophils in whole blood. Thus, these complexes represent useful SOD mimetics with a broad range of antioxidant activity toward a variety of reactive oxidants.

摘要

制备了两种双(1-吡唑基)烷烃配体,双(3,5-二甲基-1-吡唑基)甲烷和双(4-碘-3,5-二甲基-1-吡唑基)甲烷,以及它们的铜(II)配合物,双(3,5-二甲基-1-吡唑基)甲烷二硝酸铜(II)[CuL1(NO3)2]和双(4-碘-3,5-二甲基-1-吡唑基)甲烷二硝酸铜(II)[CuL2(NO3)2]·2H2O。通过光谱(紫外可见、红外、电子顺磁共振)技术和循环伏安法研究了铜(II)配合物的物理化学性质。光谱分析表明,两种配合物中配体与铜(II)离子的化学计量比为1:1,硝酸根离子为双齿配位模式。根据实验和理论从头算数据,铜(II)离子位于八面体六配位环境中。两种配合物都能够催化超氧阴离子(O2*-)的歧化反应(pH 7.5)、H2O2的分解反应(pH 7.5)和过氧亚硝酸根的分解反应(pH 10.9)。此外,两种配合物对全血中活化的人类中性粒细胞产生的细胞外和细胞内活性氧均表现出类似超氧化物歧化酶(SOD)的活性。因此,这些配合物是有用的SOD模拟物,对多种活性氧化剂具有广泛的抗氧化活性。

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