Title of article :
Oxidation of spin-traps by chlorine dioxide (ClO2) radical in aqueous solutions: First ESR evidence of formation of new nitroxide radicals
Author/Authors :
Toshihiko Ozawa، نويسنده , , Yuri Miura، نويسنده , , Jun-Ichi Ueda، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1996
Pages :
5
From page :
837
To page :
841
Abstract :
The reactivities of the chlorine dioxide (ClO2), which is a stable free radical towards some watersoluble spin-traps were investigated in aqueous solutions by an electron spin resonance (ESR) spectroscopy. The C102 radical was generated from the redox reaction of Ti3+ with potassium chlorate (KC103) in aqueous solutions. When one of the spin-traps, 5,5-dimethyl-1-pyrroline N-oxide (DMPO), was included in the Ti3+-KC103 reaction system, ESR spectrum due to the ClO2 radical completely disappeared and a new ESR spectrum [aN(1) = 0.72 mT, aH(2) = 0.41 mT], which is different from that of DMPO-C1O2 adduct, was observed. The ESR parameters of this new ESR signal was identical to those of 5,5-dimethylpyrrolidone-(2)-oxyl-(1) (DMPOX), suggesting the radical species giving the new ESR spectrum is assignable to DMPOX. The similar ESR spectrum consisting of a triplet [aN(1) = 0.69mT] was observed when the derivative of DMPO, 3,3,5,5-tetramethyl-l-pyrroline N-oxide (M4PO) was included in the Ti3+-KClO3 reaction system. This radical species is attributed to the oxidation product of M4PO, 3,3,5,5-tetramethylpyrrolidone-(2)-oxyl-(1) (M4POX). When another nitrone spin-trap, α-(4-pyridyl-l-oxide)-N-t-butylnitrone (POBN) was used as a spin-trap, the ESR signal intensity due to the C102 radical decreased and a new ESR signal consisting of a triplet [aN(1) = 0.76 mT] was observed. The similar ESR spectrum was observed when N-t-butyl-α-nitrone (PBN) was used as a spin-trap. This ESR parameter [aN(1) = 0.85 mT] was identical to the oxidation product of PBN, PBNX. Thus, the new ESR signal observed from POBN may be assigned to the oxidation product of POBN, POBNX. These results suggest that the ClO2 radical does not form the stable spin adducts with nitrone spin-traps, but oxidizes these spin-traps to give the corresponding nitroxyl radicals. On the other hand, nitroso spin-traps, 5,5-dibromo-4-nitrosobenzenesulfonate (DBNBS), and 2-methyl-2-nitrosopropane (MNP) did not trap the ClO2 radical. This result indicates that an unpaired electron of the ClO2 radical is localized on oxygen atom, because nitroso spin-traps cannot form the stable spin adduct with oxygen-centered radical.
Keywords :
C102 , Oxidation of spin-traps , ESR , Ti3+ , free radicals , Nitroso spin-traps , Chlorine dioxide , KClO3 , Nitrrone spin-traps
Journal title :
Free Radical Biology and Medicine
Serial Year :
1996
Journal title :
Free Radical Biology and Medicine
Record number :
517324
Link To Document :
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