REACTION OF CHROMIUM(VI) WITH ASCORBATE PRODUCES CHROMIUM(V), CHROMIUM(IV), AND CARBON-BASED RADICALS

被引:171
作者
STEARNS, DM [1 ]
WETTERHAHN, KE [1 ]
机构
[1] DARTMOUTH COLL,DEPT CHEM,6128 BURKE LAB,HANOVER,NH 03755
关键词
D O I
10.1021/tx00038a016
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Reaction of potassium dichromate with sodium ascorbate was studied by EPR spectroscopy at room temperature, in 0.10 M N-[2-hydroxyethyl]piperazine-N-[2-ethanesulfonic acid] (HEPES), phosphate, cacodylate, and tris(hydroxymethyl)aminomethane hydrochloride (Tris.HCl) buffers at pH 7.0, in the presence of 0.10 M spin trap [5,5-dimethyl-1-pyrroline 1-oxide or 2-methyl-N-(4-pyridinylmethylene)-2-propanamine N,N'-dioxide]. Chromium(V), ascorbate radical, CO2 radical anion, and other carbon-based spin trap-radical adducts were observed. Chromium(V), CO2 radical anion, and the carbon-based radicals were observed at low ratios of ascorbate to chromium, and ascorbate radical was observed at high ratios of ascorbate to chromium. The presence of Cr(IV) was detected indirectly by reaction with Mn(II) and a subsequent decrease in the Mn(II) EPR signal. More Cr(IV) was found for the higher reaction ratios of ascorbate to Cr(VI). The only buffer effect observed was a relative decrease of the Cr(V) signal in Tris.HCl vs HEPES, phosphate, and cacodylate buffers, no change in the radical adducts was observed. There was no evidence for reactive oxygen species as intermediates in this reaction. Addition of the singlet oxygen trap 2,2,6,6-tetramethyl-4-piperidone hydrochloride showed no 2,2,6,6-tetramethyl-1-piperidinyloxy radical formation. The Cr(V) species did not react with dioxygen, and dioxygen did not affect the formation of carbon-based radicals. A mechanism consistent with these observations is discussed.
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页码:219 / 230
页数:12
相关论文
共 80 条
[1]   TRACE METAL-ION CATALYSIS - KINETICS AND MECHANISM OF OXIDATION OF L-ASCORBIC-ACID BY CHROMIUM(VI) IN PHOSPHATE BUFFERS [J].
AGRAWAL, A ;
RAO, I ;
SHARMA, PD .
TRANSITION METAL CHEMISTRY, 1993, 18 (02) :191-196
[2]  
Alcedo J A, 1990, Int Rev Exp Pathol, V31, P85
[3]  
BALDEA I, 1980, STUD U BABES BOLYAI, V25, P24
[4]   A STOPPED-FLOW STUDY OF THE OXIDATION REACTION OF ASCORBIC-ACID WITH CHROMIC-ACID [J].
BANAS, B .
INORGANICA CHIMICA ACTA-LETTERS, 1981, 53 (01) :L13-L15
[5]   SUPPRESSION BY VANADIUM(IV) OF CHROMIUM(V)-MEDIATED DNA CLEAVAGE AND CHROMIUM(VI/V)-INDUCED MUTAGENESIS - SYNTHESIS AND CRYSTAL-STRUCTURE OF THE VANADIUM(IV) COMPLEX (NH4)[V(O)(HOC(ET)2COO)(OC(ET)2COO)] [J].
BARRDAVID, G ;
HAMBLEY, TW ;
IRWIN, JA ;
JUDD, RJ ;
LAY, PA ;
MARTIN, BD ;
BRAMLEY, R ;
DIXON, NE ;
HENDRY, P ;
JI, JY ;
BAKER, RSU ;
BONIN, AM .
INORGANIC CHEMISTRY, 1992, 31 (24) :4906-4908
[6]  
BEATTIE JK, 1972, PROGR INORG CHEM, V17, P93
[7]   REDUCTION AND DESTRUCTION RATES OF NITROXIDE SPIN PROBES [J].
BELKIN, S ;
MEHLHORN, RJ ;
HIDEG, K ;
HANKOVSKY, O ;
PACKER, L .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1987, 256 (01) :232-243
[8]   MECHANISM OF DISPROPORTIONATION OF ASCORBATE RADICALS [J].
BIELSKI, BHJ ;
ALLEN, AO ;
SCHWARZ, HA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1981, 103 (12) :3516-3518
[9]   ELECTROCHEMICAL AND SPECTROSCOPIC STUDIES OF MANGANESE(II), MANGANESE(III), AND MANGANESE(IV) GLUCONATE COMPLEXES .1. FORMULAS AND OXIDATION-REDUCTION STOICHIOMETRY [J].
BODINI, ME ;
WILLIS, LA ;
RIECHEL, TL ;
SAWYER, DT .
INORGANIC CHEMISTRY, 1976, 15 (07) :1538-1543
[10]   MAGNETIC-INTERACTIONS AND SINGLE-ION ZERO-FIELD-SPLITTING EFFECTS IN THE 2-SUBLATTICE MANGANESE CHAIN MNMN(EDTA).9H2O - MAGNETISM AND SINGLE-CRYSTAL EPR-SPECTRA [J].
BORRASALMENAR, JJ ;
BURRIEL, R ;
CORONADO, E ;
GATTESCHI, D ;
GOMEZGARCIA, CJ ;
ZANCHINI, C .
INORGANIC CHEMISTRY, 1991, 30 (05) :947-950