The main objective of this prospective clinical trial is to compare pharmacokinetics and safety and tolerability of a standard dose (400 mg) with an escalated dose (600 mg; 800 mg) of moxifloxacin (MFX). This clinical trial will provide important safety information on MFX in a higher dosage in TB patients.
Moxifloxacin (MFX) is a fluoroquinolone with a high in vitro and in vivo bactericidal activity against Mycobacterium tuberculosis. A daily dose of 600-800 mg MFX should be considered for optimal killing of the involved mycobacteria and suppression of drug resistance, which is higher than the currently used dose of 400 mg once daily. In general, safety data to support switching to the suggested higher dose are limited. For this purpose, twenty tuberculosis patients will start on a standard dose of MFX 400 mg once daily. After 8 days the dose will be increased to 600 mg once daily and on the 15th day of treatment, the dose of MFX will be escalated to 800 mg. In patients who have been treated with rifampicin (RIF) in the past three weeks prior to start of MFX treatment an additional washout period of 3 weeks to reduce the rifampicin induced enzymatic activity will precede the dose escalation.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
9
Patients will start on a standard dose of MFX 400 mg once daily. After 8 days the dose will be increased to 600 mg once daily and on the 15th day of treatment, the dose of MFX will be escalated to 800 mg. In patients who have been treated with rifampicin (RIF) in the past three weeks prior to start of MFX treatment an additional washout period of 3 weeks to reduce the rifampicin induced enzymatic activity will precede the dose escalation.
University Medical Center Groningen
Groningen, Netherlands
Bound area under the plasma concentration-time curve (AUC0-24h) relative to the minimal inhibitory concentration (MIC)
% of patients who will reach an AUC0-24h/MIC ratio of at least 100 after administration of 400 mg (i.e. 7 days post dosage) moxifloxacin
Time frame: 7 days post dosage
Unbound AUC0-24h/MIC ratio as predictive parameter for efficacy of unbound MFX dose escalated treatment of tuberculosis
% of patients who will reach an unbound AUC0-24h/MIC ratio of at least 60 after administration of 400 mg (i.e. 7 day post dosage) moxifloxacin.
Time frame: 7 days post dosage
Bound AUC0-24h/Mutant Prevention Concentration (MPC) ratio
% of patients who will reach an adequate AUC0-24h/MPC ratio of at least 93 after administration of 400 mg (i.e. 7 days post dosage) moxifloxacin
Time frame: 7 days post dosage
Unbound AUC0-24h/MPC ratio as predictive parameter for efficacy of unbound MFX dose escalated treatment of tuberculosis and suppression of MFX resistance
% of patients who will reach an unbound AUC0-24h/MPC ratio of at least 53 after administration of 400 mg (i.e. 7 days post dosage) moxifloxacin
Time frame: 7 days post dosage
% of patients having adverse effects, including QT interval prolongation, hypersensitive reactions, diarrhoea, vomiting and hepatic or renal injury
* QT interval in msec * Percentage of patients developing hepatic toxicity grade ≥ 2 or 3 Common Toxicity Criteria (CTC) * Percentage of patients developing renal toxicity grade ≥ 2 CTC
Time frame: up to 21 days
Bound area under the plasma concentration-time curve (AUC0-24h) relative to the minimal inhibitory concentration (MIC)
% of patients who will reach an AUC0-24h/MIC ratio of at least 100 after administration of 600 mg (i.e. 14 days post dosage) moxifloxacin
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Time frame: 14 days post dosage
Bound area under the plasma concentration-time curve (AUC0-24h) relative to the minimal inhibitory concentration (MIC)
% of patients who will reach an AUC0-24h/MIC ratio of at least 100 after administration of 800 mg (i.e. 21 days post dosage) moxifloxacin
Time frame: 21 days post dosage
Unbound AUC0-24h/MIC ratio as predictive parameter for efficacy of unbound MFX dose escalated treatment of tuberculosis
% of patients who will reach an unbound AUC0-24h/MIC ratio of at least 60 after administration of 600 mg (i.e. 14 days post dosage) moxifloxacin.
Time frame: 14 days post dosage
Unbound AUC0-24h/MIC ratio as predictive parameter for efficacy of unbound MFX dose escalated treatment of tuberculosis
% of patients who will reach an unbound AUC0-24h/MIC ratio of at least 60 after administration of 800 mg (21 days post dosage) moxifloxacin.
Time frame: 21 days post dosage
Bound AUC0-24h/Mutant Prevention Concentration (MPC) ratio
% of patients who will reach an adequate AUC0-24h/MPC ratio of at least 93 after administration of 600 mg (i.e. 14 days post dosage) moxifloxacin
Time frame: 14 post dosage
Bound AUC0-24h/Mutant Prevention Concentration (MPC) ratio
% of patients who will reach an adequate AUC0-24h/MPC ratio of at least 93 after administration of 800 mg (i.e. 21 days post dosage) moxifloxacin
Time frame: 21 post dosage
Unbound AUC0-24h/MPC ratio as predictive parameter for efficacy of unbound MFX dose escalated treatment of tuberculosis and suppression of MFX resistance
% of patients who will reach an unbound AUC0-24h/MPC ratio of at least 53 after administration of 600 mg (i.e. 14 days post dosage) and moxifloxacin
Time frame: 14 days post dosage
Unbound AUC0-24h/MPC ratio as predictive parameter for efficacy of unbound MFX dose escalated treatment of tuberculosis and suppression of MFX resistance
% of patients who will reach an unbound AUC0-24h/MPC ratio of at least 53 after administration of 800 mg (i.e. 21 days post dosage) moxifloxacin
Time frame: 21 days post dosage
Evaluation of the predictive performance of the limited sampling strategies based on a pharmacokinetic population model to calculate AUC0-24h. Several limited sampling points will be evaluated.
Several limited sampling strategies to predict moxifloxacin AUC0-24h, based on limited sampling points, will be evaluated after administration of 400 mg (i.e. 7 days post dosage)moxifloxacin
Time frame: 7 days post dosage
Correlation between MFX concentration (mg/L) and QT interval (msec)
Correlation between MFX concentration (mg/L) and QT interval (msec) after administration of 400 mg (i.e. 7 days post dosage) moxifloxacin
Time frame: 7 days post dosage
Correlation of drug exposure (AUC) and adverse effects
* vomiting and diarrhoea * QT interval (msec)
Time frame: up to 21 days
Correlation between the genetic risk score and MFX induced QT prolongation
Time frame: up to 21 days
Evaluation of the predictive performance of the limited sampling strategies based on a pharmacokinetic population model to calculate AUC0-24h. Several limited sampling points will be evaluated.
Several limited sampling strategies to predict moxifloxacin AUC0-24h, based on limited sampling points, will be evaluated after administration of 600 mg (i.e. 14 days post dosage) moxifloxacin
Time frame: 14 days post dosage
Evaluation of the predictive performance of the limited sampling strategies based on a pharmacokinetic population model to calculate AUC0-24h. Several limited sampling points will be evaluated.
Several limited sampling strategies to predict moxifloxacin AUC0-24h, based on limited sampling points, will be evaluated after administration of 800 mg (i.e. 21 days post dosage) moxifloxacin
Time frame: 21 days post dosage
Correlation between MFX concentration (mg/L) and QT interval (msec)
Correlation between MFX concentration (mg/L) and QT interval (msec) after administration of 600 mg (i.e. 14 days post dosage) moxifloxacin
Time frame: 14 days post dosage
Correlation between MFX concentration (mg/L) and QT interval (msec)
Correlation between MFX concentration (mg/L) and QT interval (msec) after administration of 800 mg (i.e. 21 days post dosage) moxifloxacin
Time frame: 21 days post dosage