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Isolating Central Nervous System Tissues and Associated Meninges for the Downstream Analysis of Immune cells
Published on: May 19, 2020
Delamanid Central Nervous System Pharmacokinetics in Tuberculous Meningitis in Rabbits and Humans
Elizabeth W Tucker1,2, Lisa Pieterse1, Matthew D Zimmerman3
1Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.
Abstract:
Central nervous system tuberculosis (TB) is devastating and affects vulnerable populations. Multidrug-resistant (MDR) and extensively drug-resistant (XDR) tuberculous meningitis (TBM) specifically are nearly uniformly fatal, with little information being available to guide the treatment of these patients. Delamanid (DLM), a nitro-dihydro-imidazooxazole, is a new, well-tolerated anti-TB drug with a low MIC (1 to 12 ng/ml) against Mycobacterium tuberculosis It is used for the treatment of pulmonary MDR-TB, but pharmacokinetic (PK) data for DLM in the central nervous system (CNS) of patients with TBM are not available. In the present study, we measured DLM concentrations in the brain and cerebrospinal fluid (CSF) of six rabbits with and without experimentally induced TBM receiving single-dose DLM. We report the steady-state CSF concentrations from three patients receiving DLM as part of multidrug treatment who underwent therapeutic drug monitoring. Drug was quantified using liquid chromatography-tandem mass spectrometry. In rabbits and humans, mean concentrations in CSF (in rabbits, 1.26 ng/ml at 9 h and 0.47 ng/ml at 24 h; in humans, 48 ng/ml at 4 h) were significantly lower than those in plasma (in rabbits, 124 ng/ml at 9 h and 14.5 ng/ml at 24 h; in humans, 726 ng/ml at 4 h), but the estimated free CSF/plasma ratios were generally >1. In rabbits, DLM concentrations in the brain were 5-fold higher than those in plasma (means, 518 ng/ml at 9 h and 74.0 ng/ml at 24 h). All patients with XDR-TBM receiving DLM experienced clinical improvement and survival. Collectively, these results suggest that DLM achieves adequate concentrations in brain tissue. Despite relatively low total CSF drug levels, free drug may be sufficient and DLM may have a role in treating TBM. More studies are needed to develop a fuller understanding of its distribution over time with treatment and clinical effectiveness.
Insights
Delamanid (DLM) shows promise for treating tuberculous meningitis (TBM). Despite low cerebrospinal fluid (CSF) concentrations, DLM achieves adequate brain tissue levels, suggesting potential efficacy in TBM patients.
Area of Science:
- Pharmacology
- Infectious Diseases
- Neuroscience
Background:
- Central nervous system tuberculosis (TB), particularly multidrug-resistant (MDR) and extensively drug-resistant (XDR) tuberculous meningitis (TBM), has a high fatality rate.
- Limited pharmacokinetic data exists for delamanid (DLM) in the central nervous system (CNS) of TBM patients, hindering treatment guidance.
- DLM is a novel anti-TB drug approved for pulmonary MDR-TB.
Purpose of the Study:
- To evaluate delamanid (DLM) concentrations in the brain and cerebrospinal fluid (CSF) of rabbits with experimentally induced TBM.
- To assess DLM's steady-state CSF concentrations in human patients with TBM undergoing therapeutic drug monitoring.
- To determine the potential role of DLM in treating TBM.
Main Methods:
- DLM concentrations were measured in rabbit brain and CSF using liquid chromatography-tandem mass spectrometry after single-dose administration.
- Steady-state DLM CSF concentrations were analyzed in three human patients receiving DLM for XDR-TBM.
- Pharmacokinetic parameters, including CSF/plasma ratios, were calculated.
Main Results:
- DLM concentrations in rabbit brain tissue were significantly higher than in plasma.
- While total DLM concentrations in CSF were lower than in plasma for both rabbits and humans, estimated free CSF/plasma ratios were generally >1.
- All human patients with XDR-TBM receiving DLM showed clinical improvement and survived.
Conclusions:
- Delamanid (DLM) achieves adequate concentrations in brain tissue, suggesting potential for CNS penetration.
- Despite low total CSF levels, the free fraction of DLM may be sufficient for therapeutic effect in TBM.
- DLM shows promise as a treatment option for TBM, warranting further investigation into its distribution and clinical effectiveness over time.
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