Receptor-Mediated Facilitation of Cell Volume Regulation by Swelling-Induced ATP Release in Human Epithelial Cells
スポンサーリンク
概要
著者
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Dezaki Katsuya
Department Of Physiology Jichi Medical School
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Dezaki Katsuya
Department Of Cell Physiology National Institute For Physiological Sciences
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MAENO EMI
Department of Biotechnology, Graduate School of Engineering, Osaka University
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OKADA Yasunobu
Department of Cell Physiology, National Institute for Physiological Sciences
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TSUMURA Takehiko
Department of Internal Medicine, Kyoto University Faculty of Medicine
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Maeno Emi
Department Of Biotechnology Graduate School Of Engineering Osaka University
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Maeno Emi
Department Of Cell Physiology National Institute For Physiological Sciences
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Tsumura Takehiko
Department Of Gastroenterology And Hepatology Osaka Red Cross Hospital
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Tsumura Takehiko
Department Of Internal Medicine Kyoto University Faculty Of Medicine
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Okada Yasunobu
Department Of Cell Physiology National Institute For Physiological Sciences
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DEZAKI Katsuya
Deparment of Chemical Pharmacology, Faculty of Pharmaceutical Sciences, Toyama Medical and Pharmaceutical University
関連論文
- Cell Culture in a Closed Nano-Space(MICROBIAL PHYSIOLOGY AND BIOTECHNOLOGY)
- Single-Channel Properties of Volume-Sensitive Cl^- Channel in ClC-3-Deficient Cardiomyocytes
- Hypoxia/Reoxygenation in Cultured Neonatal Rat Ventricular Myocytes Induced Necrosis and Gene Analysis of Screening from Survival Cells(Myocardial Ischemia-reperfusion, Basic 2 (IHD), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- Complementary Effects of Paeoniflorin and Glycyrrhizin on Intracellular Ca^ Mobilization in the Nerve - Stimulated Skeletal Muscle of Mice
- Receptor-Mediated Facilitation of Cell Volume Regulation by Swelling-Induced ATP Release in Human Epithelial Cells
- Methyllycaconitine-sensitive neuronal nicotinic receptor-operated slow Ca^ signal by local application or perfusion of ACh at the mouse neuromuscular junction
- OJ-520 Cardiomyogenesis of multipotent stem cells from synovial membrane transplanted in rat infarcted myocardium : A new candidate for autologous cellular cardiomyoplasty(Molecular Biology, Myocardium 2 (M) : OJ64)(Oral Presentation (Japanese))
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- Ischemia-Induced Enhancement of CFTR Expression on the Plasma Membrane in Neonatal Rat Ventricular Myocytes
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