415 results on '"Tracy, Timothy S."'
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2. Fundamentals of Enzyme Kinetics: Michaelis-Menten and Non-Michaelis–Type (Atypical) Enzyme Kinetics
3. Case Study 4: Application of Basic Enzyme Kinetics to Metabolism Studies—Real-Life Examples
4. Ginkgo biloba
5. Bilberry
6. Hawthorn
7. Panax ginseng
8. Cranberry
9. Saw Palmetto
10. A Coming Disruption in Pharmacy?
11. Methylsulfonylmethane (Dimethylsulfone)
12. Germanium
13. 5-Hydroxytryptophan (5-Hydroxy-l-Tryptophan, l-5-Hydroxytryptophan, Oxitriptan)
14. Dehydroepiandrosterone (DHEA) (Prasterone)
15. Dimethylglycine (N,N-Dimethylglycine)
16. Creatine Monohydrate
17. Colloidal Silver
18. Coenzyme Q10 (Ubiquinone, Ubidecarenone)
19. Chitosan
20. Chromium Picolinate
21. Androstenedione and Other Over-the-Counter Steroids
22. Vanadyl Sulfate
23. Shark Cartilage
24. l-Tryptophan
25. SAMe (S-adenosyl-l-methionine)
26. Red Yeast Rice Extract
27. Pyruvate
28. Melatonin (N-acetyl-5-Methoxytryptamine)
29. Hydrazine Sulfate
30. Glucosamine and Chondroitin
31. γ—Hydroxybutyric Acid (GHB), γ-Butyrolactone (GBL), and 1,4-Butanediol (BD)
32. Huperzine
33. Fish Oil
34. A Physiological-Based Pharmacokinetic Model Embedded with a Target-Mediated Drug Disposition Mechanism Can Characterize Single-Dose Warfarin Pharmacokinetic Profiles in Subjects with VariousCYP2C9Genotypes under Different Cotreatments
35. Allosteric Enzyme- and Transporter-Based Interactions
36. Pharmacokinetic Modeling of Warfarin ІI – Model-Based Analysis of Warfarin Metabolites after Warfarin Administered Either Alone or Together with Fluconazole or Rifampin
37. Pharmacokinetic Modeling of Warfarin І – Model-Based Analysis of Warfarin Enantiomers with a Target Mediated Drug Disposition Model Reveals CYP2C9 Genotype-Dependent Drug-Drug Interactions of S-Warfarin
38. CYP2C9 Genotype-Dependent Warfarin Pharmacokinetics: Impact of CYP2C9 Genotype on R- and S-Warfarin and Their Oxidative Metabolites: Flora et al
39. Localized delivery of chemotherapy to the cervix for radiosensitization
40. The Use of Immobilized Cytochrome P4502C9 in PMMA-Based Plug Flow Bioreactors for the Production of Drug Metabolites
41. Fundamentals of Enzyme Kinetics
42. Case Study 3. Application of Basic Enzyme Kinetics to Metabolism Studies: Real-Life Examples
43. Different Enzyme Kinetic Models
44. Substrate proton to heme distances in CYP2C9 allelic variants and alterations by the heterotropic activator, dapsone
45. Comparison of U.S. and Chinese pharmacy education programs
46. A Physiological-Based Pharmacokinetic Model Embedded with a Target-Mediated Drug Disposition Mechanism Can Characterize Single-Dose Warfarin Pharmacokinetic Profiles in Subjects with Various CYP2C9Genotypes under Different Cotreatments
47. Atypical Cytochrome P450 Kinetics: Implications for Drug Discovery
48. Influence of fluorescent probe size and cytochrome b5 on drug-drug interactions in CYP2C9
49. Effector-mediated alteration of substrate orientation in cytochrome P450 2C9
50. Epoxidation of the methamphetamine pyrolysis product, trans-phenylpropene, to trans-phenylpropylene oxide by CYP enzymes and stereoselective glutathione adduct formation
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