Sublingual Delivery of Insulin : Effects of Enhancers on the Mucosal Lipid Fluidity and Protein Conformation, Transport, and in Vivo Hypoglycemic Activity(Biopharmacy)
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概要
- 論文の詳細を見る
The purposes of this study were to evaluate effects of enhancers for sublingual delivering insulin on the mucosal lipid fluidity and protein conformation, transport, and in vivo hypoglycemic activity in normal rats. The effects on sublingual mucosa, and aggregation states of insulin were estimated using fluorescence polarization, and circular dichroism method, respectively. The human immortalized oral epithelial cell monolayer was used for evaluating transport of insulin. Hydroxylpropyl-β-cyclodextrin (HP-β-CD), chitosan, polyethylene-polypropylene glycol, polyoxyethylene lauryl ether, polysorbate 80, egg lecithin, or oleic acid, was used as a penetration enhancer, respectively. The fluidity of sublingual mucosal lipid was markedly reduced by these enhancers excluding polysorbate 80, and the secondary structure of the mucosal proteins was also influenced by these enhancers. The hexamers of insulin were dissociated to monomers only by chitosan, polyoxyethylene lauryl ether, and egg lecithin. Nonetheless, plasma glucose levels in normal rats were significantly lowered after sublingual administration of insulin with an enhancer compared with those without an enhancer at the same time-point. The enhancing effects may be due to one or multiple factors : increasing the mucosal lipid fluidity, directly loosing the tight junction of epithelia, and dissociating the hexamers of insulin to monomers. Among these, the opened tight junction may correlate most with the enhancing effect in the mucosal permeability. Because the aggregates of insulin exist, the dissociation of the aggregates by an enhancer would benefit the permeability.
- 社団法人日本薬学会の論文
- 2005-12-01
著者
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Wang Li
State Key Laboratory Of Natural And Biomimetic Drugs And School Of Pharmaceutical Sciences Peking Un
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Wang Gui
Department Of Pharmaceutics Peking University School Of Pharmaceutical Sciences
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Cui Chun
School Of Pharmaceutical Sciences Peking University
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Cui Chun-ying
中華人民共和国
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Zhang Qiang
中華人民共和国
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Zhang Q
State Key Laboratory Of Natural And Biomimetic Drugs And School Of Pharmaceutical Sciences Peking Un
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Zhang Q
School Of Pharmaceutical Sciences Peking University
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Zhang Shuang-qing
中華人民共和国
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Zhang Shuang
School Of Pharmaceutical Sciences Peking University
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Zhang Xuan
State Key Laboratory Of Natural And Biomimetic Drugs And School Of Pharmaceutical Sciences Peking Un
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LU Wan
School of Pharmaceutical Sciences, Peking University
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XIAO Lan
School of Pharmaceutical Sciences, Peking University
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HUANG Yan
School of Basic Medical Sciences, Peking University
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LI Sheng
School of Stomatology
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ZHANG Rui
School of Pharmaceutical Sciences, Peking University
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WANG Gui
School of Pharmaceutical Sciences, Peking University
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ZHANG Xuan
School of Pharmaceutical Sciences, Peking University
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ZHANG Qiang
The State Key Laboratory of Natural and Biomimetic Drugs, Peking University
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Zhang Rui
Department Of Pharmaceutics Peking University School Of Pharmaceutical Sciences
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Zhang X
State Key Laboratory Of Natural And Biomimetic Drugs And School Of Pharmaceutical Sciences Peking Un
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Zhang Xuan
Department Of Pharmaceutics Peking University School Of Pharmaceutical Sciences
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Lu Wan-liang
中華人民共和国
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Zhang Rui
School Of Medicine And Applied Radiological Science Research Institute Cheju National University
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Huang Yan
School Of Basic Medical Sciences Peking University
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Lu Wan-liang
School Of Pharmaceutical Sciences And State Key Laboratory Of Natural And Biomimetic Drugs Peking Un
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Xiao Lan
School Of Pharmaceutical Sciences Peking University
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Li Sheng
School Of Computer Science And Technology Harbin Institute Of Technology
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Zhang Rui
School Of Medicine And Applied Radiological Sci. Res. Inst. Jeju National Univ.
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Cui Chun-Ying
School of Pharmaceutical Sciences, Peking University
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ZHANG Xuan
School of Mathematics and Quantitative Economics, Shandong University of Finance and Economics
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