Effects of Vasoactive Intestinal Peptide on Glycogenolysis in Cultured Liver Cells
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概要
- 論文の詳細を見る
When isolated rat liver cells were incubated in the presence of vasoactive intestinal peptide at the concentrations ranging from 0.2μg to 2μg per ml, glycogenolysis was maximally stimulated within 15min. However, somatostatin inhibited the liver glycogenolysis. The combined addition to the incubation medium showed that insulin and somatostatin inhibited the stimulated glycogenolysis induced by vasoactive intestinal peptide, while vasoactive intestinal peptide plus secretin showed no additive effect on glycogenolysis, as compared with single the addition of vasoactive intestinal peptide. On the other hand, the addition of glucagon to vasoactive intestinal peptide showed additive effects on glycogenolysis. These results suggest that the receptor site for vasoactive intestinal peptide may be distinguishable from that for glucagon. Extracellular calcium ions were demonstrated to play an important role in the modulation of vasoactive intestinal peptide-induced glycogenolysis.<BR>The evidence presented in this paper indicates that glucose metabolism may be partly regulated by the direct action of vasoactive intestinal peptide on hepatocytes, which is referred to as an enterohepatic axis and that the axis is inhibited by insulin and somatostatin.
- 社団法人 日本内分泌学会の論文
著者
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Mori Hiroyoshi
Department Of Cardiology Showa University Fujigaoka Hospital
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Akiyoshi Hiroto
Department Of Biological Chemistry Faculty Of Integrated Arts And Sciences School Of Medicine The Un
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Saito Shiro
Department Of Laboratory Medicine School Of Medicine Tokushima University
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MATSUMURA MITSUHIRO
Department of Enzyme Physiology, Institute for Enzyme Research, School of Medicine, Tokushima Univer
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MORI HIROYOSHI
Department of Enzyme Physiology, Institute for Enzyme Research, School of Medicine, Tokushima University
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SAITO SHIRO
Department of Clinical Laboratory, Tokushima University Hospital, Faculty of Medicine Tokushima University
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MATSUMURA MITSUHIRO
Department of Enzyme Physiology, Institute for Enzyme Research, School of Medicine, Tokushima University
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