Seki T | Department Of Nutrition And Physiology Nihon University College Of Bioresource Sciences
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概要
- 同名の論文著者
- Department Of Nutrition And Physiology Nihon University College Of Bioresource Sciencesの論文著者
関連著者
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Seki T
Department Of Nutrition And Physiology Nihon University College Of Bioresource Sciences
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Seki Taiichiro
Lab. Of Nutrition And Physiology Dep. Of Chemistry And Life Sci. Nihon Univ. Coll. Of Bioresource Sc
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関 敏美
Research Division Teikoku Hormone Manufacturing Co. Ltd.
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Seki T
Institute Of Molecular And Cellular Biosciences University Of Tokyo
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Seki T
Nihon Univ. Coll. Of Bioresource Sci. Fujisawa Jpn
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Seki Taiichiro
Laboratory Of Nutrition And Physiology Department Of Agricultural And Biological Chemistry Nihon Uni
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Ariga Toyohiko
Nihon Univ. Graduate School Of Applied Life Sciences
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Ariga Toyohiko
Department Of Agricultural And Biological Chemistry Nihon University College Of Bioresouce Sciences
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Seki T
Department Of Pharmaceutics Graduate School Of Pharmaceutical Sciences Hokkaido Pharmaceutical Unive
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Seki Toshinobu
Hokkaido Pharmaceutical University School Of Pharmacy
著作論文
- Chitosan Gel for Transdermal Delivery of Morphine Hydrochloride
- In Vitro Skin Permeation of Morphine Hydrochloride during the Finite Application of Penetration-Enhancing System Containing Water, Ethanol and l-Menthol
- Studies on Agents with Vasodilator and β-Blocking Activities. III. Synthesis and Activity of Optical Isomers of TZC-1370
- Studies on Agents with Vasodilator and β-Blocking Activities. II
- Studies on Agents with Vasodilator and β-Blocking Activities. I
- Effect of l-Menthol-Ethanol-Water System on the Systemic Absorption of Flurbiprofen after Repeated Topical Applications in Rabbits
- Insoluble Fiber Is a Major Constituent Responsible for Lowering the Post-Prandial Blood Glucose Concentration in the Pre-Germinated Brown Rice(Biopharmacy)
- Annexin A3 Expression Increases in Hepatocytes and is Regulated by Hepatocyte Growth Factor in Rat Liver Regeneration
- Evaluation of the Establishment of a Tight Junction in Caco-2 Cell Monolayers Using a Pore Permeation Model Involving Two Different Sizes(Biopharmacy)
- A Novel Preparation Method for Microspheres of Water Soluble Polymers Using Polypropyleneglycol as the Dispersion Medium