Protective Effect of Epigallocatechin Gallate and Esculetin on Oxidative DNA Damage Induced by Psoralen Plus Ultraviolet-A Therapy
スポンサーリンク
概要
- 論文の詳細を見る
We examined antioxidants exhibiting no effects on DNA cross-linking, which is the basis of psoralen and ultraviolet-A therapy for skin diseases, and suppressing oxidative DNA damage incidental to the therapy. Epigallocatechin gallate and esculetin effectively suppressed oxidative DNA damage with little effect on the formation of DNA cross-linking. These antioxidants might be useful in suppressing the adverse reaction induced by this therapy.
- 社団法人 日本農芸化学会の論文
- 2005-03-23
著者
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KANEKO Takao
Redox Regulation, Tokyo Metropolitan Institute of Gerontology
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TAHARA Shoichi
Redox Regulation, Tokyo Metropolitan Institute of Gerontology
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Baba Naomichi
Faculty of Agriculture, Okayama University
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Baba N
Graduate School Of Natural Science And Technology Okayama University
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Baba Naomichi
Department Of Bioresources Chemistry Faculty Of Agriculture Okayama University
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Baba Naomichi
Faculty Of Agriculture Okayama University
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田原 哲士
Crest 科学技術振興事業団
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Tahara S
Department Of Applied Bioscience Faculty Of Agriculture Hokkaido University
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Tahara Satoshi
Hokkaido Univ. Sapporo Jpn
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Tahara S
Hokkaido Univ. Sapporo Jpn
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Tahara Satoshi
Faculty Of Agriculture Hokkaido University
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Tahara Satoshi
Division Of Applied Bioscience Graduate School Of Agriculture Hokkaido University:crest Japan Scienc
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Tahara Satoshi
Division Of Applied Bioscience Graduate School Of Agriculture Hokkaido University
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Kawanami Takako
Redox Regulation Research Group Tokyo Metropolitan Institute Of Gerontology
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KANEKO Takao
Tokyo Metropolitan Institute of Gerontology
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Matsuo Mitsuyoshi
Tokyo Metropolitan Institute of Gerontology
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Takiguchi Soichi
Division Of Clinical Research National Kyushu Cancer Center
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Kaneko T
Department Of Pharmaceutical Science Hiroshima International University
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Kaneko T
National Inst. Agrobiological Sci. Ibaraki Jpn
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Kaneko Takao
Tokyo Metropolitan Inst. Of Gerontology
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Kosugi Tomoko
Faculty Of Agriculture Okayama University
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Baba Naomichi
Div. Of Bioscience Graduate School Of Natural Sci. And Technol. Okayama Univ.
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Tahara S
Tokyo Metropolitan Inst. Of Gerontology
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Tahara Shoichi
Redox Regulation Research Group Tokyo Metropolitan Institute Of Gerontology
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MATSUO Mitsuyoshi
Department of Biology, Faculty of Science and High Technology Research Center, Konan University
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Kaneko Takao
Redox Regulation Research Group Tokyo Metropolitan Institute Of Gerontology
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Matsuo Mitsuyoshi
Department Of Biology Faculty Of Science And High Technology Research Center Konan University
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Matsuo Mitsuyoshi
Department Of Biology Faculty Of Science Konan University
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