Detection, characterization, and decay kinetics of ROS and thiyl adducts of Mito-DEPMPO spin trap

被引:52
作者
Hardy, Micael
Rockenbauer, Antal
Vasquez-Vivar, Jeannette
Felix, Christopher
Lopez, Marcos
Srinivasan, Satish
Avadhani, Narayan
Tordo, Paul
Kalyanaraman, B. [1 ]
机构
[1] Med Coll Wisconsin, Dept Biophys, Milwaukee, WI 53226 USA
[2] Med Coll Wisconsin, Free Rad Res Ctr, Milwaukee, WI 53226 USA
[3] Inst Struct Chem, Chem Res Ctr, H-1525 Budapest, Hungary
[4] Univ Penn, Sch Vet Med, Dept Anim Biol, Philadelphia, PA 19104 USA
[5] CNRS, UMR 6517, Lab SREP, F-13397 Marseille 20, France
[6] Univ Aix Marseille 1, Ctr St Jerome, F-13397 Marseille 20, France
[7] Univ Aix Marseille 2, Ctr St Jerome, F-13397 Marseille 20, France
[8] Univ Aix Marseille 3, Ctr St Jerome, F-13397 Marseille 20, France
关键词
D O I
10.1021/tx700101d
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
We report here the detection and characterization of spin adducts formed from the trapping of reactive oxygen species (superoxide and hydroxyl radicals) and glutathiyl and carbon-centered radicals by a newly synthesized nitrone, Mito-DEPMPO. This is a cationic nitrone spin trap with a triphenyl phosphonium cation conjugated to the DEPMPO analogue. The Mito-DEPMPO-OOH adduct, formed from the trapping of superoxide by Mito-DEPMPO, was enzymatically generated using xanthine/xanthine oxidase and neuronal nitric oxide synthase, and chemically generated by KO2 in 18-crown-6. The Mito-DEPMPO-OOH adduct exhibits an eight-line EPR spectrum with partial asymmetry arising from the alternate line-width effect. The half-life of the Mito-DEPMPO-OOH adduct is 2-2.5-times greater than that of the DEPMPO-OOH. The Mito-DEPMPO-SG adduct, formed from the trapping of glutathiyl radicals by Mito-DEPMPO, is 3-times more persistent than the analogue DEPMPO-SG adduct. In this study, we describe the EPR characterization of spin adducts formed from Mito-DEPMPO. The EPR parameters of Mito-DEPMPO adducts are distinctly different and highly characteristic. The detection of superoxide from an intact mitochondrion was feasible with Mito-DEPMPO but not with DEPMPO. We conclude that Mito-DEPMPO nitrone and its analogues are more effective than most nitrone spin traps for trapping superoxide, hydroxyl, and thiyl radicals formed in biological systems, including mitochondria.
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收藏
页码:1053 / 1060
页数:8
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