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Chemical repair activity of free radical scavenger edaravone: Reduction reactions with dGMP hydroxyl radical adducts and suppression of base lesions and AP sites on irradiated plasmid DNA
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نویسنده
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hata k. ,urushibara a. ,yamashita s. ,lin m. ,muroya y. ,shikazono n. ,yokoya a. ,fu h. ,katsumura y.
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منبع
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journal of radiation research - 2015 - دوره : 56 - شماره : 1 - صفحه:59 -66
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چکیده
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Reactions of edaravone (3-methyl-1-phenyl-2-pyrazolin-5-one) with deoxyguanosine monophosphate (dgmp) hydroxyl radical adducts were investigated by pulse radiolysis technique. edaravone was found to reduce the dgmp hydroxyl radical adducts through electron transfer reactions. the rate constants of the reactions were greater than 4 × 108 dm3 mol-1 s-1 and similar to those of the reactions of ascorbic acid,which is a representative antioxidant. yields of single-strand breaks,base lesions,and abasic sites produced in puc18 plasmid dna by gamma ray irradiation in the presence of low concentrations (10-1000 μmol dm-3) of edaravone were also quantified,and the chemical repair activity of edaravone was estimated by a method recently developed by the authors. by comparing suppression efficiencies to the induction of each dna lesion,it was found that base lesions and abasic sites were suppressed by the chemical repair activity of edaravone,although the suppression of single-strand breaks was not very effective. this phenomenon was attributed to the chemical repair activity of edaravone toward base lesions and abasic sites. however,the chemical repair activity of edaravone for base lesions was lower than that of ascorbic acid. © the author 2014. published by oxford university press on behalf of the japan radiation research society and japanese society for radiation oncology.
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کلیدواژه
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antioxidant; chemical repair; edaravone (Radicut®); pulse radiolysis
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آدرس
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department of nuclear engineering and management,school of engineering,university of tokyo,7-3-1 hongo,bunkyo-ku,tokyo,113-8656,japan,advanced science research center,japan atomic energy agency,2-4 shirakatashirane,tokai-mura,naka-gun,ibaraki,319-1195, Japan, laboratory of radiation biology,osaka prefecture university,1-2 gakuenchou,naka-ku,sakai-shi,osaka,599-8570, Japan, nuclear professional school,school of engineering,university of tokyo,2-22 shirakatashirane,tokai-mura,nakagun,ibaraki,319-1188, Japan, school of nuclear science and technology,university of science and technology of china,96 jinzhai road,hefei,anhui,230026, China, department of beam materials science,institute of scientific and industrial research,osaka university,8-1 mihogaoka,ibaraki-shi,osaka,567-0047, Japan, quantum beam science directorate,japan atomic energy agency,8-1-7 umemidai,kizukawa-shi,kyoto,619-0215, Japan, advanced science research center,japan atomic energy agency,2-4 shirakatashirane,tokai-mura,naka-gun,ibaraki,319-1195, Japan, shanghai institute of applied physcs,chinese academy of science,shanghai,201800, China, department of nuclear engineering and management,school of engineering,university of tokyo,7-3-1 hongo,bunkyo-ku,tokyo,113-8656,japan,nuclear professional school,school of engineering,university of tokyo,2-22 shirakatashirane,tokai-mura,nakagun,ibaraki,319-1188, Japan
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Authors
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