Hepatic Reduction of Carbamoyl-PROXYL in Ferric Nitrilotriacetate Induced Iron Overloaded Mice: An in Vivo ESR Study
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概要
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Reduction of a nitroxyl radical, carbamoyl-PROXYL in association of free radical production and hepatic glutathione (GSH) was investigated in iron overloaded mice using an in vivo L-band electron spin resonance (ESR) spectrometer. Significant increases in hepatic iron, lipid peroxidation and decrease in hepatic GSH were observed in mice intraperitoneally (i.p.) administrated with ferric nitrilotriacetate (Fe(III)-NTA, a total 45 µmol/mouse over a period of 3 weeks). Free radical production in iron overloaded mice was evidenced by significantly enhanced rate constant of ESR signal decay of carbamoyl-PROXYL, which was slightly reduced by treatment with iron chelator, deferoxamine. Moreover, the rate constant of ESR signal decay was negatively correlated with hepatic GSH level (r=-0.586, p<0.001). On the other hand, hepatic GSH-depletion (>80%) in mice through daily i.p. injection and drinking water supplementation of L-buthionine-[S,R]-sulfoximine (BSO) significantly retarded ESR signal decay, while there were no changes in serum aspartate aminotransferase and liver thiobarbituric acid-reactive substances levels. In conclusion, GSH plays two distinguish roles on ESR signal decay of carbamoyl-PROXYL, as an antioxidant and as a reducing agent, dependently on its concentration. Therefore, it should be taken into account in the interpretation of free radical production in each specific experimental setting.
著者
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Utsumi Hideo
Department Of Bio-functional Science Graduate School Of Pharmaceutical Sciences Kyushu University
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Yamaguchi Yumiko
Department Of Applied Molecular Biosciences Graduate School Of Bioagricultural Sciences Nagoya Unive
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Morales Noppawan
Department Of Pharmacology Faculty Of Science Mahidol University
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Yamaguchi Yumiko
Department of Bio-Function Science, Faculty of Pharmaceutical Science, Kyushu University
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Murakami Kimiyo
Department of Bio-Function Science, Faculty of Pharmaceutical Science, Kyushu University
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Kosem Nuttavut
Innovation Center for Medical Redox Navigation, Kyushu University
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Utsumi Hideo
Department of Bio-Function Science, Faculty of Pharmaceutical Science, Kyushu University
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