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The optimization of methadone dosing whilst treating with rifampicin: A pharmacokinetic modeling study
Raj K S Badhan1, Rosalind Gittins2, Dina Al Zabit1
1Medicines Optimisation Research Group, Aston Pharmacy School, Aston University, Birmingham, B4 7ET, United Kingdom.
Background:
The use of oral methadone in opioid substitution treatment (OST) for the management of opioid use disorder is established clinical practice. Confounding treatment is the increased risks of contracting Mycobacterium tuberculosis, the mainstay treatment of which incorporates the potent CYP 2B6 inducer rifampicin.
Methods:
This study applied pharmacokinetic modelling using virtual clinical trials, to pharmacokinetically quantify the extent and impact of rifampicin-mediated drug-drug interactions (DDI) on methadone plasma concentrations. An R-methadone model was developed and validated against 11 retrospective clinical studies prior to use in all subsequent studies. The aims were to investigate: (i) the impact of the DDI on daily methadone doses of 60 mg, 90 mg and 120 mg; (ii) dose escalation during rifampicin and (iii) dose reduction following rifampicin cessation.
Results:
A dose increase to 160 mg daily during rifampicin treatment phases was required to maintain peak methadone plasma concentrations within a derived therapeutic window of 80-700 ng/mL. Dose escalation prior to rifampicin initiation was not required and resulted in an increase in subjects with supra-therapeutic concentrations. However, during rifampicin cessation, a dose reduction of 10 mg every 2 days commencing prior to rifampicin cessation, ensured that most patients possessed a peak methadone plasma concentration within an optimal therapeutic window.
Implications:
Rifampicin significantly alters methadone plasma concentrations and necessitates dose adjustments. Daily doses of almost double those used perhaps more commonly in clinical practice are required for optimal plasma concentration and careful consideration of dose reduction strategies would be required during the deinduction phase.
Insights
Rifampicin significantly increases methadone doses needed for opioid substitution treatment (OST). Careful dose reduction is crucial when stopping rifampicin to maintain therapeutic methadone levels.
Area of Science:
- Pharmacology
- Pharmacokinetics
- Drug Interactions
Background:
- Opioid substitution treatment (OST) commonly uses oral methadone.
- Tuberculosis treatment with rifampicin can interfere with methadone therapy.
- Rifampicin is a potent CYP 2B6 inducer, potentially affecting drug metabolism.
Purpose of the Study:
- To quantify the impact of rifampicin on methadone plasma concentrations using pharmacokinetic modeling.
- To investigate methadone dose adjustments during rifampicin treatment and cessation.
- To determine optimal dosing strategies for methadone during co-administration with rifampicin.
Main Methods:
- Development and validation of a pharmacokinetic R-methadone model.
- Virtual clinical trials to simulate drug-drug interactions (DDI).
- Analysis of methadone plasma concentrations at various doses (60-120 mg) and during rifampicin treatment phases.
Main Results:
- A daily dose increase to 160 mg of methadone was required to maintain therapeutic concentrations during rifampicin treatment.
- Dose escalation before rifampicin initiation was not necessary and led to supra-therapeutic levels.
- A gradual dose reduction strategy during rifampicin cessation ensured optimal methadone plasma concentrations.
Conclusions:
- Rifampicin significantly alters methadone plasma concentrations, requiring substantial dose adjustments.
- Nearly double the common methadone doses may be needed during concurrent rifampicin therapy.
- Phased dose reduction post-rifampicin is essential to avoid supra-therapeutic methadone levels.
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