Hara Akira | Department Of Pathology Gifu University School Of Medicine
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概要
関連著者
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Hara Akira
Department Of Pathology Gifu University School Of Medicine
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Hara A
Department Of Tumor Pathology Gifu University Graduate School Of Medicine
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Hara Akira
岐阜薬科大学
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Hara A
Department Of Pathology Gifu University School Of Medicine
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Matsuura Kazuya
岐阜薬科大学 生化
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Deyashiki Yoshihiro
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Hara Akira
Biochemistry Laboratory Gifu Pharmaceutical University
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Matsuura Kazuya
Biochemistry Laboratory Gifu Pharmaceutical University
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Hara Akira
Department Of Tumor Pathology Gifu University Graduate School Of Medicine
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Ishikura S
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Ishikura Syuhei
Hospital For Sick Children
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Nakanishi M
Laboratory Of Molecular Biochemistry Department Of Biomolecular Science Faculty Of Engineering Gifu
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Sato K
Mie Univ. Mie
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Ishikura Shuhei
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Hara Akira
Shonan Institute Of Technology
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Hirakawa Akiha
3rd Dept. Of Intern. Med. Kyoto Univ.
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Hirakawa Akina
3rd Medical Clinic Faculty Of Medicine Kyoto University
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Hara Akira
First Department Of Internal Medicine. Fukui Medical School
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Hara A
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Hara Akira
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Usami Noriyuki
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Usami Noriyuki
岐阜薬科大学 生化学
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Usami N
Department Of Hygienic Chemistry Faculty Of Pharmaceutical Sciences Hokuriku University
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Usami N
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Hara Akira
岐阜薬科大学 生化学研究室
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SHINTANI Syunichi
Laboratory of Biochemistry, Gifu Pharmaceutical University
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Hara A
Department Of Applied Biological Chemistry Faculty Of Agriculture Meijo University
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Shintani Syunichi
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Shintani Syunichi
Laboratory Of Biochemistry Gifu Parmaceutical University
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KATAGIRI Yoshihiro
Department of Pharmacy, Gifu University Hospital
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Hara Akira
Laboratory Of Biochemistry And Nutritional Chemistry:(present Address)faculty Of Agriculture Meijo U
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HARA Akira
Laboratory of Biological Chemistry, Department of Applied Biological Chemistry, Faculty of Agricultu
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SHIRAISHI Hiroaki
Laboratory of Biochemistry, Gifu Pharmaceutical University
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Nonaka Takamasa
School Of Pharmacy Iwate Medical University
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Shiraishi Hiroaki
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Tanaka N
Shiga Univ. Medical Sci. Shiga
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Shiraishi Hiroaki
Endocrine Disrupters Research Laboratory National Institute For Environmental Studies
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Tanaka Nobutaka
Departments Of Surgery Asahi General Hospital
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SAKAI Syunsuke
Department of Urology, Gifu Prefectural Hospital
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Nonaka Takashi
School of Pharmacy, Iwate Medical University
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Yamamoto Tomohiro
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Yamamoto Tomohiro
岐阜薬科大学 生化
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Yamamoto T
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Hara Akira
Lab. Of Biochemistry Gifu Pharmaceutical Univ.
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Hara Akira
From The Third Division Department Of Internal Medicine Kyoto University
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DEGUCHI Takashi
Department of Urology, Gifu University School of Medicine
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Kakumoto Mikio
岐阜大学 病理
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Kakumoto Mikio
Department Of Biochemistry Gifu Pharmaceutical University
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Kakumoto Mikio
Biochemistry Laboratory Gifu Pharmaceutical University
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Ninomiya Mitsuo
岐阜薬科大学 生化
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Katayama Masaki
Department Of Pathology Gifu University School Of Medicine
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ISHIKURA Syuhei
Laboratory of Biochemistry, Gifu Pharmaceutical University
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DEGUCHI TAKASHI
Gifu Prostate Cancer Research Group
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TANIGUCHI Mitsuhiro
Gifu Urothelial Cancer Research Group
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TAKEUCHI Toshimi
Department of Urology, Gifu Municipal Hospital
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Kakumoto Mikio
Department Of Pathology Gifu University School Of Medicine
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Katagiri Yoshihiro
Department Of Biochemistry Gifu Pharmaceutical University
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Kaji Mikio
Forest In Chichibu Faculty Of Agriculture The University Of Tokyo
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Takeuchi Toshimi
Department Of Urology Gifu Municipal Hospital
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Ishikura Syuhei
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Katagiri Yoshihiro
Deparhnent of Pharmacy Gifu University Hospital
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USAMI Noriyuki
Laboratory of Biochemistry, Gifu Pharmaceutical University
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MATSUURA Kazuya
Laboratory of Biochemistry, Gifu Pharmaceutical University
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El-KABBANI Ossama
Department of Medicinal Chemistry, Victorian College of Pharmacy, Monash University
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Hirakawa Akina
From The Third Division Department Of Internal Medicine Kyoto University
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DEYASHIKI Yoshihiro
Laboratory of Biochemistry, Gifu Pharmaceutical University
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Nonaka Takamasa
Department Of Bioengineering Nagaoka University Of Technology
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MITSUI Yukio
Department of BioEngineering Nagaoka University of Technology
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Tanaka Nobutada
Department Of Applied Chemistry Kyushu Institute Of Technology
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MATSUURA Kazuya
Biochemistry Laboratory, Gifu Pharmaceutical University
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DEYASHIKI Yoshihiro
Biochemistry Laboratory, Gifu Pharmaceutical University
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HARA Akira
Biochemistry Laboratory, Gifu Pharmaceutical University
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El-kabbani Ossama
Medicinal Chemistry And Drug Action Monash Inst. Of Pharmaceutical Sciences
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El-kabbani Ossama
Department Of Medicinal Chemistry Victorian College Of Pharmacy Monash University
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HARA Akira
Department of Pathology, Gifu University School of Medicine
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SAKAI Noboru
Department of Neurosurgery,Gifu University School of Medicine
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UEDA Tetsuya
Department of Biological Science and Technology, Science University of Tokyo
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HIGAKI Yu
Laboratory of Biochemistry, Gifu Pharmaceutical University
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ISHIKURA Shuhei
Laboratory of Biochemistry, Gifu Pharmaceutical University
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SHINTANI Shunichi
Laboratory of Biochemistry, Gifu Pharmaceutical University
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MIYABE Yoshiyuki
Gifu Prefectural Tajimi Hospital
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SUGIYAMA Tadashi
Department of Pharmacy, Gifu University Hospital
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Yokoi T
Department Of Medicine And Clinical Science Gunma University Graduate School Of Medicine
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Yokoi Tsuyoshi
北海道大学 薬研究 代謝分析
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Higaki Yu
Laboratory Of Biochemistry Gifu Pharmaceutical University
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NONAKA Takamasa
Department of Physics, The University of Tokyo
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TERADA Tomoyuki
Laboratory of Biochemistry, Faculty of Pharmacy, Osaka Ohtani University
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Kagawa Yasuo
Department Of Biochemistry Faculty Of Medicine Jichi Medical School
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USAMI Noriyuki
Faculty of Health Science, Kyusyuu University of Health and Welfare
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ARAKI Mayuko
Laboratory of Biochemistry, Gifu Pharmaceutical University
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NAKAJIMA Satoko
Laboratory of Biochemistry, Gifu Pharmaceutical University
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KAMEYAMA Akiko
Laboratory of Biochemistry, Gifu Pharmaceutical University
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CARBONE Vincenzo
Department of Medicinal Chemistry, Victorian College of Pharmacy, Monash University
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NOZAKI Ayumu
Laboratory of Biochemistry, Gifu Pharmaceutical University
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SHINODA Michio
Chunou Hospital
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MORI Shinichi
Chunou Hospital
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SHINTANI Syunichi
Gifu Prefectural Hospital
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ISHIKURA Syuhei
Gifu Pharmaceutical University
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HARA Akira
Gifu Pharmaceutical University
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NAKAMURA Katsunori
Department of Clinical Pharmacology, Graduate School of Medicine, Gunma University
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Kamataki T
Hokkaido Univ. Sapporo Jpn
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Nakayama K
Laboratory Of Drug Metabolism Graduate School Of Pharmaceutical Sciences Hokkaido University
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SATO Kumiko
Laboratory of Biochemistry, Gifu Pharmaceutical University
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NINOMIYA Mitsuo
Department of Internal Medicine, Gihoku General Hospital
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SAKAI Syunsuke
Department of Urology, Gifu Prefectural Gifu Hospital
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Araki Mayuko
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Terada Tomoyuki
Laboratory Of Biochemistry And Molecular Biology Graduate School Of Pharmaceutical Sciences Osaka Un
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Hara Akira
Department Of Applied Biological Chemistry Faculty Of Agriculture Meijo University
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Kamataki Tetsuya
Lab.drug Metab. Grad.sch.pharm.sci. Hokkaido Univ.
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Carbone Vincenzo
Department Of Medicinal Chemistry Victorian College Of Pharmacy Monash University
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Tsumita Yuki
Department Of Medicine And Clinical Science Gunma University Graduate School Of Medicine
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Sakai Noboru
Department Of Neurosurgery Gifu University School Of Medicine
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Sakai Noboru
Department Of Food Engineering Tokyo University Of Fisheries
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Yokoi Tsuyoshi
Division Of Drug Metabolism And Toxicology Faculty Of Pharmaceutical Sciences Kanazawa University
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Yokoi Tsuyoshi
Laboratory Of Drug Metabolism Division Of Pharmacobio-dynamics Graduate School Of Pharmaceutical Sci
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Kameyama Akiko
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Nakayama Kazuo
Laboratory Of Drug Metabolism Division Of Pharmacobio-dynamics Graduate School Of Pharmaceutical Sci
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KUBOTA Yoshinori
Department of Neurosurgery, Murakami Memorial Hospital, Asahi University
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Yokoi T
Laboratory Of Drug Metabolism Graduate School Of Pharmaceutical Sciences Hokkaido University
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Yokoi Tsuyoshi
Fac.pharm. Sci. Hokkaido Univ.
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Sawada Hideo
岐阜薬科大学
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KANAZU TAKUSHI
岐阜薬科大学
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MINOURA HIDEAKI
岐阜薬科大学
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Nakayama Katsuo
Department Of Clinical Pharmacology Graduate School Of Medicine Gunma University
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NAKANISHI Masayuki
Department of Applied Chemistry, Faculty of Engineering, Gifu University
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Kanazu T
Shionogi & Co. Ltd. Osaka Jpn
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Nakamura Katsunori
Department Of Clinical Pharmacology Graduate School Of Medicine Gunma University
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Kamataki Tetsuya
Laboratory Of Drug Metabolism Division Of Pharmacobio-dynamics Graduate School Of Pharmaceutical Sci
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Terada Tomoyuki
Laboratory Of Biochemistry And Molecular Biology Graduate School Of Pharmaceutical Sciences Osaka Un
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NAKANISHI Masayuki
Laboratory of Biochemistry,Gifu Pharmaceutical University
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Kubota Yoshinori
Department Of Information Electronics School Of Engineering Nagoya University
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Kagawa Yasuo
Department Of Neurosurgery Gifu University School Of Medicine
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Ueda Tetsuya
Department Of Neurosurgery Gifu University School Of Medicine
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TAMADA Yoshiyuki
Biochemistry Laboratory, Gifu Pharmaceutical University
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MIYABE Yoshiyuki
Biochemistry Laboratory, Gifu Pharmaceutical University
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NAKANISHI Masayuki
Biochemistry Laboratory, Gifu Pharmaceutical University
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Nakajima Satoko
Laboratory Of Biochemistry Gifu Pharmaceutical University
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Yokoi Tsuyoshi
Div.drug Metab. Fac.of Pharm.sic. Hokkaido Univ.
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Kamataki Tetsuya
Div.drug Metab. Fac.of Pharm.sic. Hokkaido Univ.
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Ueda Tetsuya
Department Of Biological Science And Technology Science University Of Tokyo
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Kamataki Tetsuya
Lab. Drug Metab. Fac. Pharm. Sci. Hokkaido University
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Sugiyama Tadashi
Department Of Applied Chemistry Faculty Of Science Tokyo University Of Science
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久保田 芳則
Department of Neurosurgery, Murakami Memorial Hospital, Asahi University
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Kamataki Tetsuya
Laboratory of Drug Metabolism, Hokkaido University Graduate School of Pharmaceutical Sciences
著作論文
- Substrate Specificity of Human 3(20)α-Hydroxysteroid Dehydrogenase for Neurosteroids and Its Inhibition by Benzodiazepines
- Structure-specific Effcects of Thyroxine Analogs on Human Liver 3α-Hydroxysteroid Dehydrogenase.
- Dual Effect of Anti-inflammatory 2-Arylpropionic Acid Derivatives on a Major Isoform of Human Liver 3α-Hydroxysteroid Dehydrogenase.
- Dual Effects of Anti-inflammatory 2-Arylpropionic Acid Derivatives on a Major Isoform of Human Liver 3α-Hydroxysteroid Dehydrogenase
- Structural and Functional Characterization of Rabbit and Human L-Gulonate 3-Dehydrogenase
- Characterization of Two Isoforms of Mouse 3(17)α-Hydroxysteroid Dehydrogenases of the Aldo-Keto Reductase Family(Biochemistry/Molecular Biology)
- Characterization of a Major Form of Human Isatin Reductase and the Reduced Metabolite.
- Molecular Cloning, Expression and Tissue Distribution of Hamster Diacetyl Reductase. : Identity with L-Xylulose.
- Enzymatic Characteristics and Subcellular Distribution of A Short-Chain Dehydrogenase/Reductase Family Protein, P26h, in Hamster Testis and epididymis.
- Crystallization and Preliminary X-ray Diffraction Analysis of Monkey Dimeric Dihydrodiol Dehydrogenase.
- Identity of Dimeric Dihydrodiol Dehydrogenase as NADP^+-dependent D-Xylose Dehydrogenase in Pig Liver.
- Roles of His-79 and Tyr-180 of D-Kylose/Dihydrodiol Dehydrogenase in Catalytic Function.
- Kinetic Alteration of Human Dihydrodiol/3α-Hydroxysteroid Dehydrogenase Isoenzyme, AKR1C4,by Replacement of Histidine-216 with Tyrosine or Phenylalanine.
- Structure-Specifis Effects of Thyroxine Analogs on Human Liver 3α-Hydroxysteroid Dehydrogenase
- Cloning and Sequencing of the cDNA Species for Mammalian Dimeric Dihydrodiol Dehydrogenases.
- Inhibition of Human Aldehyde Reductase by Drugs for Testing the Function of Liver and Kidney.
- Inhibition of Human Aldehyde Reductase by Drugs for Testing the Function of Liver and Kidney
- Roles of the C-Terminal Domains of Human Dihydrodiol Dehydrogenase Isoforms in the Binding of Substrates and Modulator : Probing with Chimaeric Enzymes.
- Sequence of the cDNA of a Human Dihydrodiol Dehydrogenase Isoform (AKR1C2) and Tissue Distribution of its mRNA.
- Activation of Human Liver 3α-Hydroxysteroid Dehydrogenase by Clofibrate Derivatives.
- Characterization of a Novel Variant (S145C/L311V) of 3α-Hydroxysteroid/Dihydrodiol Dehydrogenase in Human Liver.
- Molecular Cloning of a Gene Encoding Acid α-Glucosidase from Tetrahymena pyriformis.
- Purification of Cytosolic Estradiol 17β-Dehydrogenases from Male and Female Mouse Liver.
- Changes in Blood Polyamine Levels Following Chemotherapy in Patients with Invasive Urinary Bladder Carcinoma.
- Identification of a Principal mRNA Species for Human 3α-Hydroxysteroid Dehydrogenase Isoform(AKR1C3) That Exhibits High Prostaglandin D_2 11-Ketoreductase Activity.
- Indentification of a Principal mRNA Species for Human 3α-Hydroxysteroid Dehydrogenase Isoform (AKR1C3) That Exhibits High Prostaglandin D_2 11-Ketoreductase Activity
- Changes in Tissue and Blood Polyamine Levels Following Chemotherapy in Rats with Urinary Bladder Carcinma Induced by N-Butyl-N-(4-hydroxybutyl)nitrosamine in Rats.
- Changes in Tissue and Blood Polyamines During N-Butyl-N-(4-hydroxybutyl)-nitrosoamine-induced Bladder Carcinogenesis in Rats.
- Identification of Amino Acid Residues Responsible for Difference in Substrate Specificity and Inhibitor Sensitivity Between Two Human Liver Dihydrodiol Dehydrogenase Isoenzymes by Site-directed Mutagenesis.
- Involvement of Two Basic Residues(Lys-270 and Arg-276)of Human Liver 3α-Hydroxysteroid Dehydrogenase in NADP(H)Binding and Actvation by Sulphobromophthalein : Site-directed Mutagenesis and Kinetic Analysis.
- Relationship of Human Liver Dihydrodiol Dehydrogenases to Hepatic Bile-Acid-Binding Protein and an Oxidoreductase of Human Colon Cells.
- 3-Deoxyglucosone Reductase in Dog Adrenal Glands. : Identification as Aldose Reductase.
- Molecular Cloning and Characterization of Mouse Estradiol 17β-Dehydrogenase(A-Specific), a Member of the Aldoketoreductase Family.
- Purification and Characterization of Dimeric Dihydrodiol Dehydrogenase from Dog Liver.
- Molecular Cloning of Two Human Liver 3α-Hydroxysteroid/Dihydrodiol Dehydrogenase Isoenzymes That are Identical with Chlordecone Reductase and Bile-acid Binder.
- Purification and Characterization of a Novel Dimeric 20α-Hydroxysteroid Dehydrogenase from Tetrahymena Pyriformis.
- Stereospecificity of Trans-Dihydrodiol Oxidation by Dimeric and Monomeric Dihydrodiol Dehydrogenase from Mammalian Tissues.
- Monkey 3-Deoxyglucosone Reductase : Tissue Distribution, Purification of Three Multiple Forms of the Kidney Enzyme That Are Identical with Dihydrodiol Dehydrogenase, Aldehyde Reductase and Aldose Reductase.
- Cloning and Sequence Analysis of a cDNA Encoding Tetrameric Carbonyl Reductase of Pig Lung.
- Ultrastructual Localization of Carbonyl Reductase in Mouse Lung.
- Aldose Reductase is a Major Reductase for Isocaproaldehyde, a Product of Side-Chain Cleavage of Cholesterol, in Human and Animal Adrenal Glands.
- A Sensitive Fluorometric Assay for Dihydrodiol Dehydrogenase.
- Switch of Coenzyme Specificity of Mouse Lung Carbonyl Reductase by Substitution of Threonine 38 with Aspartic Acid.
- Involvement of Two Basic Residues (Lys-17 and Arg-39) of Mouse Lung Carbonyl Reductase in NADP(H)-Binding and Fatty Acid Activation : Site-Directed Mutagenesis and Kinetic Analyses.
- Activation of Human Liver 3α-Hydroxysteroid Dehydrogenase by Sulphobromophthalein.
- Microcystic Meningioma Without Enhancement on Neuroimaging : Case Report
- Identification of Lactaldehyde Reductase and Aldehyde Reductase as Functions of the Same Enzyme Protein in Pig Kidney
- Involvement of Two Basic Residues (Lys-17 and Arg-39) of Mouse Lung Carbonyl Reductase in NADP(H)-Binding and Fatty Acid Activation: Site-Directed Mutagenesis and Kinetic Analyses
- Crystal Structure of Ternary Complex of Mouse Lung Carbonyl Reductase at 1.8Å Resolution : the Structural Origin of Coenzyme Specificity in the Short-Chain Dehydrogenase/Reductase Family.
- Crystalization of Mouse Lung Carbonyl Reductase Complexed with NADPH and Analysis of Symmetry of its Tetrametic Molecule.
- Over-expression of Pig Lung Carbonyl Reductase in Escherichia Coli.
- Expression and kinetic Properties of a Recombinant 3α-Hydroxysteroid/Dihydrodiol Dehydrogenase Isenzyme of Human Liver.
- Cloning, Expression and Tissue Distribution of Mouse Tetrameric Carbonyl Reductase. : Identity with an Adipocyte 27-kDa Protein.
- Reduction of Prostaglandin D_2 to 9α, 11β-Prostaglandin F_2 by a Human Liver 3α-Hydroxysteroid/Dihydorodiol Dehydrogenase Isozyme.
- Purification and Characterization of NADP-dependent 3α-Hydroxysteroid Dehydrogenase from Mouse Liver Cyotosol.
- Mouse Liver Dihydrodiol Dehydrogenases. : Identity of the Predominant and a Minor Form with 17β-Hydroxysteroid Dehydrogenase and Aldehyde Reductase
- Crystallzation of Mouse Lung Carbonyl Reductase Complexed with NADPH and Analyssi of Symmetry of Its Tetrameric Moloucle
- Reduction of Drug Ketones by Dihydrodiol Dehydrogenases, Carbonyl Reductase and Aldehyde Reductase of Human Liver.
- Kinetic Studies of the Inhibition of a Human Liver 3α-Hydroxysteroid/Dihydrodiol Dehydrogenase Isozyme by Bile Acids and Anti-inflammatory Drugs.
- Expression and Kinetic Properties of a Recombinant 3α-Hydroxysteroid/Dihydrodiol Dehydrogenase Isoenzyme of Human Liver