Wu Li-jun | Department Of Phytochemistry Shenyang Pharmaceutical University
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概要
関連著者
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Tashiro Shin-ichi
Dep. Of Clinical And Biomedical Sciences Showa Pharmaceutical Univ. Jpn
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ONODERA Satoshi
Department of Clinical and Biomedical Sciences, Showa Pharmaceutical University
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Wu Li-jun
Department Of Phytochemistry Shenyang Pharmaceutical University
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Wu L
Department Of Phytochemistry Shenyang Pharmaceutical University
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Onodera S
Dep. Of Clinical And Biomedical Sciences Showa Pharmaceutical Univ. Jpn
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Ikejima Takashi
China-japan Res. Inst. Of Medical And Pharmaceutical Sciences Shenyang Pharmaceutical Univ. Chn
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Tashiro Shin-ichi
Department Of Clinical And Biomedical Sciences Showa Pharmaceutical University
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Onodera Satoshi
Department Of Cinical And Biomedical Sciences Showa Pharmaceutical University
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Tashiro Shin-ichi
Department Of Cinical And Biomedical Sciences Showa Pharmaceutical University
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Tashiro S
Department Of Clinical And Biomedical Sciences Showa Pharmaceutical University
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Onodera S
Department Of Clinical And Biomedical Sciences Showa Pharmaceutical University
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IKEJIMA Takashi
China-Japan Research Institute of Medical and Pharmaceutical Sciences, Shenyang Pharmaceutical Unive
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Ikejima Takashi
China–Japan Research Institute of Medical and Pharmaceutical Sciences, Shenyang Pharmaceutical University
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TASHIRO Shin-ichi
Department of Clinical and Biomedical Sciences, Showa Pharmaceutical University
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Onodera Satoshi
昭和薬科大学 病態科
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WU Lijun
Department of Phytochemistry, Shenyang Pharmaceutical University
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UCHIUMI Fumiaki
Department of Gene Regulation, Faculty of Pharmaceutical Sciences, Tokyo University of Science
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Li Lin-hao
China-japan Research Institute Of Medical And Pharmaceutical Sciences Shenyang Pharmaceutical Univer
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Uchiumi Fumiaki
Department Of Gene Regulation Faculty Of Pharmaceutical Sciences Tokyo University Of Science
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Uchiumi Fumiaki
Department Of Biochemistry Faculty Of Pharmaceutical Sciences Tokyo University Of Science
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Huang Jian
Department Of Phytochemistry Shenyang Pharmaceutical University
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LI Dan
China-Japan Institute of Medical and Pharmaceutical Sciences, Shenyang Pharmaceutical University
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LI Lin-Hao
China-Japan Research Institute of Medical and Pharmaceutical Sciences, Shenyang Pharmaceutical Unive
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Li Dan
China-japan Research Institute Of Medical And Pharmaceutical Sciences Shenyang Pharmaceutical Univer
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Zhou Bei
China-japan Research Institute Of Medical And Pharmaceutical Sciences Shenyang Pharmaceutical Univer
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Wu Zhen
中華人民共和国
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Wu Zhen
Department Of Phytochemistry Shenyang Pharmaceutical University
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ZHOU Bei
China-Japan Research Institute of Medical and Pharmaceutical Sciences, Shenyang Pharmaceutical Unive
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HUANG Jian
China-Japan Research Institute of Medical and Pharmaceutical Sciences, Shenyang Pharmaceutical Unive
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TASHIRO Shinichi
Department of Clinical and Biomedical Science, Showa Pharmeceutical University
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Zhang Chun-ling
China-japan Research Institute Of Medical And Pharmaceutical Sciences Shenyang Pharmaceutical Univer
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Zhang Chun-Ling
China–Japan Research Institute of Medical and Pharmaceutical Sciences, Shenyang Pharmaceutical University
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WU Zhen
Department of Anesthesiology, Jiangyin Hospital Affiliated to Medical College of South-East University
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Zhang Y
China-japan Research Institute Of Medical And Pharmaceutical Sciences Shenyang Pharmaceutical Univer
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CUI Qiao
China-Japan Research Institute of Medical Pharmaceutical Sciences, Shenyang Pharmaceutical Universit
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CHEN Shen-geng
China-Japan Institute of Medical and Pharmaceutical Sciences, Shenyang Pharmaceutical University
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HUANG Qing
China-Japan Research Institute of Medical and Pharmaceutical Sciences, Shenyang Pharmaceutical Unive
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GAO Hui-Yuan
Department of Phytochemistry, Shenyang Pharmaceutical University
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Gao Hui-yuan
Department Of Phytochemistry Shenyang Pharmaceutical University
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Cui Qiao
China-japan Institute Of Medical And Pharmaceutical Sciences Shenyang Pharmaceutical University
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ZHANG Ying
China-Japan Research Institute of Medical and Pharmaceutical Sciences, Shenyang Pharmaceutical Unive
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ZUO Hai-Jun
Department of Phytochemistry, Shenyang Pharmaceutical University
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IKEJIMA Takashi
Department of Phytochemistry, Shenyang Pharmaceutical University
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ZHOU Bei
Department of Phytochemistry, Shenyang Pharmaceutical University
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LI Linhao
China-Japan Research Institute of Medical and Pharmaceutical Sciences, Shenyang Pharmaceutical Unive
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Zuo Hai-jun
Department Of Phytochemistry Shenyang Pharmaceutical University
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Huang Jian
Department Of Hematology The First Affiliated Hospital College Of Medicine Zhejiang University
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Chen Shen-geng
China-japan Institute Of Medical And Pharmaceutical Sciences Shenyang Pharmaceutical University
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Huang Qing
China-japan Research Institute Of Medical And Pharmaceutical Sciences Shenyang Pharmaceutical Univer
著作論文
- Reactive Oxygen Species Mediate Oridonin-Induced HepG2 Apoptosis Through p53, MAPK, and Mitochondrial Signaling Pathways
- Inactivation of Ras and Changes of Mitochondrial Membrane Potential Contribute to Oridonin-Induced Autophagy in A431 Cells
- Oridonin Inhibited the Tyrosine Kinase Activity and Induced Apoptosis in Human Epidermoid Carcinoma A431 Cells(Molecular and Cell Biology)
- Oridonin-Induced A431 Cell Apoptosis Partially Through Blockage of the Ras/Raf/ERK Signal Pathway
- Silibinin Protects Against Isoproterenol-Induced Rat Cardiac Myocyte Injury Through Mitochondrial Pathway After Up-regulation of SIRT1
- Fibroblast Growth Factor-2 Suppresses Oridonin-Induced L929 Apoptosis Through Extracellular Signal-Regulated Kinase-Dependent and Phosphatidylinositol 3-Kinase-Independent Pathway
- Silibinin Protects Rat Cardiac Myocyte from Isoproterenol-Induced DNA Damage Independent on Regulation of Cell Cycle(Pharmacology)
- Silibinin Prevents UV-Induced HaCaT Cell Apoptosis Partly through Inhibition of Caspase-8 Pathway(Pharmacology)
- Bcl-2 Up-Regulation and P-p53 Down-Regulation Account for the Low Sensitivity of Murine L929 Fibrosarcoma Cells to Oridonin-Induced Apoptosis(Pharmacology)
- (+)-Catechin, an Ingredient of Green Tea, Protects Murine Microglia From Oxidative Stress-Induced DNA Damage and Cell Cycle Arrest
- Intracellular Regulation of Evodiamine-Induced A375-S2 Cell Death(Pharmacology)
- Cytochrome c Release From Oridonin-Treated Apoptotic A375-S2 Cells Is Dependent on p53 and Extracellular Signal-Regulated Kinase Activation
- Oridonin Induces a Caspase-Independent But Mitochondria- and MAPK-Dependent Cell Death in the Murine Fibrosarcoma Cell Line L929(Pharmacology)
- Silymarin Prevents UV Irradiation-Induced A375-S2 Cell Apoptosis(Pharmacology)
- p53-Mediated Cell Cycle Arrest and Apoptosis Induced by Shikonin via a Caspase-9-Dependent Mechanism in Human Malignant Melanoma A375-S2 Cells