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Jim Fang
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Bioavailability of anthocyanins
J Fang
Drug Metabolism Review 46 (4), 508-520, 2014
3632014
Metabolism of risperidone to 9-hydroxyrisperidone by human cytochromes P450 2D6 and 3A4
J Fang, M Bourin, GB Baker
Naunyn-Schmiedeberg's archives of pharmacology 359 (2), 147-151, 1999
2931999
Classification of fruits based on anthocyanin types and relevance to their health effects
J Fang
Nutrition 31, 1301-1306, 2015
1702015
Trazodone Is Metabolized tom-Chlorophenylpiperazine by CYP3A4 from Human Sources
S Rotzinger, J Fang, GB Baker
Drug metabolism and disposition 26 (6), 572-575, 1998
1511998
Involvement of CYP3A4 and CYP2D6 in the metabolism of haloperidol
J Fang, GB Baker, PH Silverstone, RT Coutts
Cellular and molecular neurobiology 17 (2), 227-233, 1997
1281997
Elucidation of individual cytochrome P450 enzymes involved in the metabolism of clozapine
J Fang, RT Coutts, KF McKenna, GB Baker
Naunyn-Schmiedeberg's archives of pharmacology 358 (5), 592-599, 1998
1251998
In vitro characterization of the metabolism of haloperidol using recombinant cytochrome p450 enzymes and human liver microsomes
J Fang, G McKay, J Song, A Remillrd, X Li, K Midha
Drug metabolism and disposition 29 (12), 1638-1643, 2001
942001
Some Anthocyanins Could Be Efficiently Absorbed across the Gastrointestinal Mucosa: Extensive Presystemic Metabolism Reduces Apparent Bioavailability
J Fang
Journal of agricultural and food chemistry 62 (18), 3904-3911, 2014
812014
On the metabolism of haloperidol
JW Gorrod, J Fang
Xenobiotica 23 (5), 495-508, 1993
801993
Human CYP2D6 and metabolism of m-chlorophenylpiperazine
S Rotzinger, J Fang, RT Coutts, GB Baker
Biological psychiatry 44 (11), 1185-1191, 1998
731998
Metabolism, pharmacogenetics, and metabolic drug–drug interactions of antipsychotic drugs
J Fang, JW Gorrod
Cellular and molecular neurobiology 19 (4), 491-510, 1999
681999
Effect of l-deprenyl, its structural analogues and some monoamine oxidase inhibitors on dopamine uptake
J Fang, PH Yu
Neuropharmacology 33 (6), 763-768, 1994
671994
Dehydration is the first step in the bioactivation of haloperidol to its pyridinium metabolite
J Fang, JW Gorrod
Toxicology letters 59 (1), 117-123, 1991
671991
Neuroprotective Effects of Some Monoamine Oxidase‐B Inhibitors Against DSP‐4‐Induced Noradrenaline Depletion in the Mouse Hippocampus
PH Yu, BA Davis, J Fang, AA Boulton
Journal of neurochemistry 63 (5), 1820-1828, 1994
621994
Determination of metoprolol, and its four metabolites in dog plasma
J Fang, HA Semple, J Song
Journal of Chromatography B 809 (1), 9-14, 2004
612004
Comparison of cytotoxicity of a quaternary pyridinium metabolite of haloperidol (HP+) with neurotoxinN-methyl-4-phenylpyridinium (MMP+) towards cultured dopaminergic …
J Fang, D Zuo, PH Yu
Psychopharmacology 121 (3), 373-378, 1995
561995
High-performance liquid chromatographic method for the detection and quantitation of haloperidol and seven of its metabolites in microsomal preparations
J Fang, JW Gorrod
Journal of Chromatography B: Biomedical Sciences and Applications 614 (2 …, 1993
561993
Metabolic drug interactions with selective serotonin reuptake inhibitor (SSRI) antidepressants
GB Baker, J Fang, S Sinha, RT Coutts
Neuroscience & Biobehavioral Reviews 22 (2), 325-333, 1998
531998
Metabolism of clozapine by rat brain: the role of flavin-containing monooxygenase (FMO) and cytochrome P450 enzymes
J Fang
European journal of drug metabolism and pharmacokinetics 25 (2), 109-114, 2000
372000
Investigation of the metabolism of the neuroleptic drug haloperidol by capillary electrophoresis
AJ Tomlinson, LM Benson, JP Landers, GF Scanlan, J Fang, JW Gorrod, ...
Journal of Chromatography A 652 (2), 417-426, 1993
371993
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