ID | 72667 |
Author |
Fukuhara, Yayoi
Department of Pharmacology, Institute of Health Bioscience, the University of Tokushima Graduate School
Tsuchiya, Koichiro
Department of Medical Pharmacology, Institute of Health Bioscience, the University of Tokushima Graduate School
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Horinouchi, Yuya
Department of Pharmacology, Institute of Health Bioscience, the University of Tokushima Graduate School
Tajima, Soichiro
Department of Pharmacology, Institute of Health Bioscience, the University of Tokushima Graduate School
Kihira, Yoshitaka
Department of Pharmacology, Institute of Health Bioscience, the University of Tokushima Graduate School
Hamano, Shuichi
Department of Pathological Science and Technology, Institute of Health Bioscience, the University of Tokushima Graduate School
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Ikeda, Yasumasa
Department of Pharmacology, Institute of Health Bioscience, the University of Tokushima Graduate School
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Ishizawa, Keisuke
Department of Pharmacology, Institute of Health Bioscience, the University of Tokushima Graduate School
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Tomita, Shuhei
Department of Pharmacology, Institute of Health Bioscience, the University of Tokushima Graduate School
Tamaki, Toshiaki
Department of Pharmacology, Institute of Health Bioscience, the University of Tokushima Graduate School
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Keywords | nifedipine
nitrosonifedipine
antioxidant
tumor necrosis factor-α
reactive oxygen species
endothelial cells
cumene hydroperoxide
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Content Type |
Journal Article
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Description | Recently, increasing evidence suggests that the antihypertensive drug nifedipine acts as a protective agent for endothelial cells, and that the activity is unrelated to its calcium channel blocking. Nitrosonifedipine (NO-NIF) is metabolically and photochemically produced from nifedipine, and NO-NIF has been recognized as a contaminant of nifedipine because it has no antihypertensive effect. Treatment of tumor necrosis factor-α (TNF-α) suppressed the cell viability and facilitated the expression of Inter-Cellular Adhesion Molecule 1(ICAM-1) in human glomerular endothelial cells (HGECs) though, pretreatment of NO-NIF significantly recovered the TNF-α-induced cell damage to the same extent as Trolox-C did, and suppressed the ICAM-1 expression in a concentration dependent manner. In addition, NO-NIF inhibited the cell toxicity induced by cumene hydroperoxide, which hampers the integrity of cell membrane through oxidative stress, as effective as Trolox-c. These data suggest that NO-NIF is a candidate for a new class of antioxidative drug that protect cells against oxidative stress in glomerular endothelial cells.
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Journal Title |
The journal of medical investigation : JMI
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ISSN | 13431420
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NCID | AA11166929
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Volume | 58
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Issue | 1-2
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Start Page | 118
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End Page | 126
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Sort Key | 118
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Published Date | 2011-02
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Remark | The journal of medical investigation : http://medical.med.tokushima-u.ac.jp/jmi/index.html
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EDB ID | |
FullText File | |
language |
eng
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departments |
Pharmaceutical Sciences
Medical Sciences
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