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Department Of Clinical Pharmaceutics And Therapeutics Graduate School-of Pharmaceutical Sciences Hok | 論文
- Transepithelial Transport of Telmisartan in Caco-2 Monolayers(Pharmacology)
- Transport Mechanism for L-Lactic Acid in Human Myocytes Using Human Prototypic Embryonal Rhabdomyosarcoma Cell Line (RD Cells)(Pharmacology)
- Characterization of Secretory Intestinal Transport of Phenolsulfonphthalein
- Mechanism of L-lactic Acid Transport in L6 Skeletal Muscle Cells
- Comparison of the Disposition Behavior of Organic anions in an Animal Model for Wilson's Disease (Long-Evans Cinnamon rats) with that in Normal Long-Evans Agouti rats
- Mechanism of Active Secretion of Phenolsulfonphthalein in the Liver via Mrp2 (abcc2), an Organic Anion Transporter
- Single-step isolation method for six glycoforms of human α_1-acid glycoprotein by hydroxylapatite chromatography and study of their binding capacities for disopyramide
- Purification method for α-1-acid glycoprotein with subsequent high-performance liquid chromatographic determination of monosaccharides in plasma of healthy subjects and patients with renal insufficiency
- A Simple Method for the Simulation of Unbound Serum Disopyramide Concentration in Patients
- GM3 synthase gene is a novel biomarker for histological classification and drug sensitivity against epidermal growth factor receptor tyrosine kinase inhibitors in non-small cell lung cancer
- The Effect of Membrane Surface Potential on the Permeability of Anionic Compounds Across the Apical Membrane in Human Intestinal Epithelial (Caco-2) Cells
- UPTAKE CHARACTERISTICS OF POLYAMINES INTO RAT INTESTINAL BRUSH-BORUER MEMBRANE VESICLES
- MECHANISM OF GASTROINTESTINAL ABSORPTION OF β-LACTAM ANTIBIOTICS : Contribution of Passive Diffusion to the BBM Permeation Process
- Characterization of the Disposition of Lutein after i.v. Administration to Rats(Pharmacology)
- Expression Level of ABCG2 in the Placenta Decreases from the Mid Stage to the End of Gestation
- Uninephrectomy induces progressive glomerulosclerosis and apoptosis in anti-Thy1 glomerulonephritis
- INTESTINAL ABSORPTION OF SEVERAL β-LACTAM ANTIBIOTICS. V.^ EFFECT OF AMINO β-LACTAM ANALOGUES AND DIPEPTIDES ON THE ABSORPTION OF AMINO β-LACTAM ANTIBIOTICS
- INTESTINAL ABSORPTION MECHANISMS OF SEVERAL ZWITTERIONIC β-LACTAM ANTIBIOTICS : ROLE OF BRUSH BORDER MEMBRANE AND BINDING TO F1 FRACTION