Güner S, Karaböcek S
Department of Chemistry, Karadeniz Technical University, Trabzon, Turkey.
J Biochem Mol Toxicol. 1998;12(1):53-9. doi: 10.1002/(sici)1099-0461(1998)12:1<53::aid-jbt7>3.0.co;2-o.
The superoxide scavenging activities of copper(II) complexes with the ligands, 6,6'-methylene- bis(5'-amino-3',4'-benzo-2'-thiapentyl)-1,11-diamino- 2,3:9,10-dibenzo-4,8-dithiaundecane (H4L), and 6,6'- bis(5'-amino-3'4'-benzo-2'-thiapentyl)-1,11-diamino- 2,3:9,10-dibenzo-4,8-dithiaundecane (H4L"), were investigated by xanthine-xanthine oxidase (X/XO) assays using nitroblue tetrazolium (NBT) as indicator molecule, and the results were compared with respect to the particular type of anion (ClO4, Cl, NO3) on the apical site of the copper(II) complexes. All of the complexes inhibited the reduction of NBT by superoxide radicals, with the Cu2(L')2 complex exhibiting the highest scavenging activity against superoxide radicals among the complexes examined. The catalytic efficiency of the complexes for dismutation of superoxide radicals depends on the particular anion liganded to Cu(II) ion in the complexes, and the order of potency was observed to be ClO4 > Cl > NO3 in phosphate buffer at pH 7.40. The Cu(II)-H4L' complexes had the lowest IC50 and catalytic rate constant values indicating that the distorted geometry of the Cu(II)-H4L' complexes influence their catalytic activities for dismutation of superoxide radicals more efficiently. The difference in the activities of the complexes toward superoxide radicals can also be attributed to the nature of the anions on the apical site of the copper(II) complexes and the superoxide dismutase-like activity.
采用氮蓝四唑(NBT)作为指示分子,通过黄嘌呤 - 黄嘌呤氧化酶(X/XO)法研究了铜(II)与配体6,6'-亚甲基 - 双(5'-氨基 - 3',4'-苯并 - 2'-硫代戊基)-1,11 - 二氨基 - 2,3:9,10 - 二苯并 - 4,8 - 二硫杂十一烷(H4L)和6,6'-双(5'-氨基 - 3'4'-苯并 - 2'-硫代戊基)-1,11 - 二氨基 - 2,3:9,10 - 二苯并 - 4,8 - 二硫杂十一烷(H4L")形成的配合物的超氧化物清除活性,并针对铜(II)配合物顶端位点上特定类型的阴离子(ClO4、Cl、NO3)比较了结果。所有配合物均抑制超氧化物自由基对NBT的还原,在所研究的配合物中,Cu2(L')2配合物对超氧化物自由基表现出最高的清除活性。配合物对超氧化物自由基歧化反应的催化效率取决于配合物中与Cu(II)离子配位的特定阴离子,在pH 7.40的磷酸盐缓冲液中,活性顺序为ClO4 > Cl > NO3。Cu(II)-H4L'配合物具有最低的IC50和催化速率常数,表明Cu(II)-H4L'配合物的扭曲几何结构更有效地影响其对超氧化物自由基歧化反应的催化活性。配合物对超氧化物自由基活性的差异也可归因于铜(II)配合物顶端位点上阴离子的性质以及超氧化物歧化酶样活性。