Literature DB >> 28685396

Pharmacokinetics and Pharmacogenomics of Bupropion in Three Different Formulations with Different Release Kinetics in Healthy Human Volunteers.

Jamie N Connarn1, Stephanie Flowers2, Marisa Kelly3, Ruijuan Luo1, Kristen M Ward2, Gloria Harrington3, Ila Moncion1, Masoud Kamali3,4, Melivin McInnis3, Meihua R Feng1, Vicki Ellingrod2, Andrew Babiskin5, Xinyuan Zhang5, Duxin Sun6.   

Abstract

The purpose of this pharmacokinetics (PK) study was to investigate whether different release kinetics from bupropion hydrochloride (HCl) immediate release (IR), sustained release (SR), and extended release (ER) formulations alter its metabolism and to test the hypothesis that the unsuccessful bioequivalence (BE) study of the higher strength (300 mg) of bupropion HCl ER tablets based on the successful BE study of the lower strength (150 mg) was due to metabolic saturation in the gastrointestinal (GI) lumen. A randomized six-way crossover study was conducted in healthy volunteers. During each period, subjects took a single dose of IR (75/100 mg), SR (100/150 mg), or ER (150/300 mg) formulations of bupropion HCl; plasma samples for PK analysis were collected from 0-96 h for all formulations. In addition, each subject's whole blood was collected for the genotyping of various single-nucleotide polymorphisms (SNPs) of bupropion's major metabolic enzymes. The data indicates that the relative bioavailability of the ER formulations was 72.3-78.8% compared with IR 75 mg. No differences were observed for ratio of the area under the curve (AUC) of metabolite to AUC of parent for the three major metabolites. The pharmacogenomics analysis suggested no statistically significant correlation between polymorphisms and PK parameters of the various formulations. Altogether, these data suggested that the different release kinetics of the formulations did not change metabolites-to-parent ratio. Therefore, the differing BE result between the 150 and 300 mg bupropion HCl ER tablets was unlikely due to the metabolic saturation in the GI lumen caused by different release patterns.

Entities:  

Keywords:  CYP2B6; bioequivalence; bupropion; carbonyl reductase; metabolism

Mesh:

Substances:

Year:  2017        PMID: 28685396     DOI: 10.1208/s12248-017-0102-8

Source DB:  PubMed          Journal:  AAPS J        ISSN: 1550-7416            Impact factor:   4.009


  32 in total

1.  Metabolism of bupropion by carbonyl reductases in liver and intestine.

Authors:  Jamie N Connarn; Xinyuan Zhang; Andrew Babiskin; Duxin Sun
Journal:  Drug Metab Dispos       Date:  2015-04-22       Impact factor: 3.922

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Journal:  Clin Pharmacol Ther       Date:  2006-01       Impact factor: 6.875

3.  Bio-International 92, conference on bioavailability, bioequivalence, and pharmacokinetic studies.

Authors:  H H Blume; K K Midha
Journal:  J Pharm Sci       Date:  1993-11       Impact factor: 3.534

4.  15 years of clinical experience with bupropion HCl: from bupropion to bupropion SR to bupropion XL.

Authors:  Maurizio Fava; A John Rush; Michael E Thase; Anita Clayton; Stephen M Stahl; James F Pradko; J Andrew Johnston
Journal:  Prim Care Companion J Clin Psychiatry       Date:  2005

5.  Enantioselective effects of hydroxy metabolites of bupropion on behavior and on function of monoamine transporters and nicotinic receptors.

Authors:  M Imad Damaj; F Ivy Carroll; J Brek Eaton; Hernan A Navarro; Bruce E Blough; Sadiq Mirza; Ronald J Lukas; Billy R Martin
Journal:  Mol Pharmacol       Date:  2004-09       Impact factor: 4.436

Review 6.  Cytochrome P450 enzymes in drug metabolism: regulation of gene expression, enzyme activities, and impact of genetic variation.

Authors:  Ulrich M Zanger; Matthias Schwab
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7.  Influence of CYP2B6 genetic variants on plasma and urine concentrations of bupropion and metabolites at steady state.

Authors:  Neal L Benowitz; Andy Z X Zhu; Rachel F Tyndale; Delia Dempsey; Peyton Jacob
Journal:  Pharmacogenet Genomics       Date:  2013-03       Impact factor: 2.089

Review 8.  Spotlight on bupropion in major depressive disorder.

Authors:  Sohita Dhillon; Lily P H Yang; Monique P Curran
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9.  Clinical Pharmacogenetics Implementation Consortium guidelines for CYP2C19 genotype and clopidogrel therapy: 2013 update.

Authors:  S A Scott; K Sangkuhl; C M Stein; J-S Hulot; J L Mega; D M Roden; T E Klein; M S Sabatine; J A Johnson; A R Shuldiner
Journal:  Clin Pharmacol Ther       Date:  2013-05-22       Impact factor: 6.875

10.  Pharmacokinetics of bupropion, a novel antidepressant agent, following oral administration to healthy subjects.

Authors:  J W Findlay; J Van Wyck Fleet; P G Smith; R F Butz; M L Hinton; M R Blum; D H Schroeder
Journal:  Eur J Clin Pharmacol       Date:  1981       Impact factor: 2.953

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Review 3.  Pharmacogenetics factors influencing smoking cessation success; the importance of nicotine metabolism.

Authors:  Yadira X Perez-Paramo; Philip Lazarus
Journal:  Expert Opin Drug Metab Toxicol       Date:  2020-12-29       Impact factor: 4.481

4.  Probing the Release of Bupropion and Naltrexone Hydrochloride Salts from Biopolymeric Matrices of Diverse Chemical Structures.

Authors:  Angeliki Siamidi; Aikaterini Dedeloudi; Marilena Vlachou
Journal:  Polymers (Basel)       Date:  2021-04-30       Impact factor: 4.329

5.  Physiologically Based Pharmacokinetic Modeling of Bupropion and Its Metabolites in a CYP2B6 Drug-Drug-Gene Interaction Network.

Authors:  Fatima Zahra Marok; Laura Maria Fuhr; Nina Hanke; Dominik Selzer; Thorsten Lehr
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  5 in total

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