Mechanism of Insulin Uptake in Rat Alveolar Type II and Type I-Like Epithelial Cells
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概要
- 論文の詳細を見る
The mechanism underlying the handling of protein and peptide drugs such as insulin in alveolar epithelial cells is still unclear. We therefore examined fluorescein isothiocyanate-labeled (FITC)-insulin uptake in rat primary cultured alveolar type II epithelial cells and in transdifferentiated type I-like cells. FITC-insulin uptake in these cells was much higher than those of FITC-immunoglobulin (IgG), transferrin, and dextran. FITC-insulin uptake was time- and concentration-dependent, and was almost completely inhibited by metabolic inhibitors in both cells, while bafilomycin A1 inhibited the uptake only in type II cells. Inhibitors of clathrin- and caveolae-mediated endocytosis did not affect FITC-insulin uptake in either type of cell. Dynasore, a dynamin GTPase inhibitor, potently inhibited FITC-insulin uptake in type II cells. These results suggest that the characteristics of insulin uptake in type II and type I cells are different, and dynamin-dependent endocytosis that utilizes neither clathrin nor caveolae is involved in type II cells, while a dynamin-independent pathway is mainly involved in type I cells.
- 日本薬学会の論文
著者
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YUMOTO Ryoko
Department of Pharmaceutics and Therapeutics, Division of Clinical Pharmaceutical Science, Programs
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NAGAI Junya
Department of Pharmaceutics and Therapeutics, Division of Clinical Pharmaceutical Science, Programs
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TAKANO Mikihisa
Department of Pharmaceutics and Therapeutics, Division of Clinical Pharmaceutical Science, Programs
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Yumoto Ryoko
Dep. Of Pharmaceutics And Therapeutics Graduate School Of Biomedical Sciences Hiroshima Univ.
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Ikehata Mika
Department of Pharmaceutics and Therapeutics, Graduate School of Biomedical Sciences, Hiroshima Univ
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Kato Yuki
Department of Pharmaceutics and Therapeutics, Graduate School of Biomedical Sciences, Hiroshima Univ
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Yumoto Ryoko
Department Of Pharmaceutics And Therapeutics Graduate School Of Biomedical Sciences Hiroshima Univer
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Takano Mikihisa
Department Of Pharmaceutics And Therapeutics Graduate School Of Biomedical Sciences Hiroshima Univer
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Nagai Junya
Department Of Pharmaceutics And Therapeutics Graduate School Of Biomedical Sciences Hiroshima Univer
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Kato Yuki
Department Of Orthopaedic Surgery University Of Pittsburgh
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Kato Yuki
Department Of Applied Mathematics And Physics Tottori University
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Yumoto Ryoko
Department of Pharmaceutics and Therapeutics, Graduate School of Biomedical Sciences, Hiroshima University
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Kato Yuki
Department of Pharmaceutics and Therapeutics, Graduate School of Biomedical Sciences, Hiroshima University
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