Literature DB >> 30617089

Linezolid Pharmacokinetics in South African Patients with Drug-Resistant Tuberculosis and a High Prevalence of HIV Coinfection.

Sean Wasserman1, Paolo Denti2, James C M Brust3,4, Mahmoud Abdelwahab2, Siphokazi Hlungulu5, Lubbe Wiesner2, Jennifer Norman2, Frederick A Sirgel6, Robin M Warren6, Aliasgar Esmail7, Keertan Dheda7, Neel R Gandhi8,9,10, Graeme Meintjes5, Gary Maartens5,2.   

Abstract

The World Health Organization (WHO) recently recommended that linezolid be prioritized in treatment regimens for drug-resistant tuberculosis (TB), but there are limited data on its pharmacokinetics (PK) in patients with this disease. We conducted an observational study to explore covariate effects on linezolid PK and to estimate the probability of PK/pharmacodynamic target attainment in South African patients with drug-resistant TB. Consecutive adults on linezolid-based regimens were recruited in Cape Town and underwent intensive PK sampling at steady state. Noncompartmental analysis was performed. Thirty participants were included: 15 HIV positive, 26 on the initial dose of 600 mg daily, and 4 participants on 300 mg daily after dose reduction for linezolid-related toxicity. There was a negative correlation between body weight and exposure, with 17.4% (95% confidence interval [CI], 0.1 to 31.7) decrease in area under the concentration-time curve from 0 to 24 h (AUC0-24) per 10-kg weight increment after adjustment for other covariates. Age was an independent predictor of trough concentration, with an estimated 43.4% (95% CI, 5.9 to 94.2) increase per 10-year increment in age. The standard 600-mg dose achieved the efficacy target of free AUC/MIC of >119 at wild-type MIC values (≤0.5 mg/liter), but the probability of target attainment dropped to 61.5% (95% CI, 40.6 to 79.8) at the critical concentration of 1 mg/liter. When dosed at 600 mg daily, trough concentrations were above the toxicity threshold of 2 mg/liter in 57.7% (95% CI, 36.9 to 76.6). This confirms the narrow therapeutic index of linezolid, and alternative dosing strategies should be explored.
Copyright © 2019 American Society for Microbiology.

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Keywords:  drug-resistant tuberculosis; linezolid

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Year:  2019        PMID: 30617089      PMCID: PMC6395899          DOI: 10.1128/AAC.02164-18

Source DB:  PubMed          Journal:  Antimicrob Agents Chemother        ISSN: 0066-4804            Impact factor:   5.191


  30 in total

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Journal:  Eur Respir J       Date:  2015-04-02       Impact factor: 16.671

2.  Systematic review and meta-analysis of the efficacy and safety of therapy with linezolid containing regimens in the treatment of multidrug-resistant and extensively drug-resistant tuberculosis.

Authors:  Xin Zhang; Matthew E Falagas; Konstantinos Z Vardakas; Rui Wang; Rong Qin; Jin Wang; Youning Liu
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3.  Multidrug-resistant tuberculosis not due to noncompliance but to between-patient pharmacokinetic variability.

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4.  Promising antituberculosis activity of the oxazolidinone PNU-100480 relative to that of linezolid in a murine model.

Authors:  K N Williams; C K Stover; T Zhu; R Tasneen; S Tyagi; J H Grosset; E Nuermberger
Journal:  Antimicrob Agents Chemother       Date:  2008-12-15       Impact factor: 5.191

5.  Clarithromycin increases linezolid exposure in multidrug-resistant tuberculosis patients.

Authors:  Mathieu S Bolhuis; Richard van Altena; Dick van Soolingen; Wiel C M de Lange; Donald R A Uges; Tjip S van der Werf; Jos G W Kosterink; Jan-Willem C Alffenaar
Journal:  Eur Respir J       Date:  2013-03-21       Impact factor: 16.671

6.  Linezolid for treatment of chronic extensively drug-resistant tuberculosis.

Authors:  Myungsun Lee; Jongseok Lee; Matthew W Carroll; Hongjo Choi; Seonyeong Min; Taeksun Song; Laura E Via; Lisa C Goldfeder; Eunhwa Kang; Boyoung Jin; Hyeeun Park; Hyunkyung Kwak; Hyunchul Kim; Han-Seung Jeon; Ina Jeong; Joon Sung Joh; Ray Y Chen; Kenneth N Olivier; Pamela A Shaw; Dean Follmann; Sun Dae Song; Jong-Koo Lee; Dukhyoung Lee; Cheon Tae Kim; Veronique Dartois; Seung-Kyu Park; Sang-Nae Cho; Clifton E Barry
Journal:  N Engl J Med       Date:  2012-10-18       Impact factor: 91.245

Review 7.  Clinical pharmacokinetics of linezolid, a novel oxazolidinone antibacterial.

Authors:  Dennis J Stalker; Gail L Jungbluth
Journal:  Clin Pharmacokinet       Date:  2003       Impact factor: 6.447

8.  Population pharmacokinetic analysis of linezolid in patients with infectious disease: application to lower body weight and elderly patients.

Authors:  Sadahiro Abe; Koji Chiba; Brenda Cirincione; Thaddeus H Grasela; Kaori Ito; Toshio Suwa
Journal:  J Clin Pharmacol       Date:  2009-06-23       Impact factor: 3.126

9.  Quantitative drug susceptibility testing of Mycobacterium tuberculosis by use of MGIT 960 and EpiCenter instrumentation.

Authors:  Burkhard Springer; Katja Lucke; Romana Calligaris-Maibach; Claudia Ritter; Erik C Böttger
Journal:  J Clin Microbiol       Date:  2009-04-01       Impact factor: 5.948

10.  Linezolid pharmacokinetics in MDR-TB: a systematic review, meta-analysis and Monte Carlo simulation.

Authors:  James Millard; Henry Pertinez; Laura Bonnett; Eva Maria Hodel; Véronique Dartois; John L Johnson; Maxine Caws; Simon Tiberi; Mathieu Bolhuis; Jan-Willem C Alffenaar; Geraint Davies; Derek J Sloan
Journal:  J Antimicrob Chemother       Date:  2018-07-01       Impact factor: 5.790

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2.  Correlation of Linezolid Hair Concentrations with Plasma Exposure in Patients with Drug-Resistant Tuberculosis.

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Journal:  Expert Opin Drug Saf       Date:  2019-12-06       Impact factor: 4.250

4.  Linezolid Population Pharmacokinetics in South African Adults with Drug-Resistant Tuberculosis.

Authors:  Mahmoud Tareq Abdelwahab; Sean Wasserman; James C M Brust; Keertan Dheda; Lubbe Wiesner; Neel R Gandhi; Robin M Warren; Frederick A Sirgel; Graeme Meintjes; Gary Maartens; Paolo Denti
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5.  Linezolid Exposure Is Associated with Cytopenias in Patients Treated for Multidrug-Resistant Tuberculosis.

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6.  Linezolid toxicity in patients with drug-resistant tuberculosis: a prospective cohort study.

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7.  The Funnel: a Screening Technique for Identifying Optimal Two-Drug Combination Chemotherapy Regimens.

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Journal:  Antimicrob Agents Chemother       Date:  2021-01-20       Impact factor: 5.191

Review 8.  Population Pharmacokinetics and Bayesian Dose Adjustment to Advance TDM of Anti-TB Drugs.

Authors:  Marieke G G Sturkenboom; Anne-Grete Märtson; Elin M Svensson; Derek J Sloan; Kelly E Dooley; Simone H J van den Elsen; Paolo Denti; Charles A Peloquin; Rob E Aarnoutse; Jan-Willem C Alffenaar
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