Redox Reactions of Tocopherol Monoglucoside in Aqueous Solutions: A Pulse Radiolysis Study
Author(s) -
Sudhir Kapoor,
Tulsi Mukherjee,
Tsutomu Kagiya,
Cherupally Krishnan Krishnan Nair
Publication year - 2002
Publication title -
journal of radiation research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.643
H-Index - 60
eISSN - 1349-9157
pISSN - 0449-3060
DOI - 10.1269/jrr.43.99
Subject(s) - radiolysis , chemistry , radical , photochemistry , ascorbic acid , kinetics , tocopherol , redox , radical ion , aqueous solution , halogen , antioxidant , vitamin e , organic chemistry , alkyl , ion , physics , food science , quantum mechanics
The reactions between tocopherol monoglucoside (TMG), a water-soluble vitamin-E derivative, with Br2.-, N3., (SCN)2.-, NO2., OH. and various halogenated peroxyl radicals were examined using a pulse radiolysis technique. The results demonstrate that TMG forms a stable phenoxyl radical at pH > 6.8. The thus-formed phenoxyl radical shows pH-dependent decay kinetics and is disproportionated by 2nd order kinetics at pH 2.3. It was observed that the TMG reactivity towards a halogenated peroxyl radical increases with the number of halogen atoms at the carbon atom having a peroxyl group. The reaction between the TMG phenoxyl radical and ascorbic acid was also examined using a pulse radiolysis technique. The results indicate that the TMG phenoxyl radical is repaired by ascorbate. Kinetic studies indicate that TMG may act as an antioxidant to repair free-radical damage to some biologically important compounds. The one-electron reduction potential for TMG was found to be 0.522 V +/- 0.06 vs. NHE.
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