Poor Penetration of Antibiotics Into Pericardium in Pericardial Tuberculosis

Justin Shenje1, F Ifeoma Adimora-Nweke2, Ian L Ross3

  • 1Divisions of Cardiology, Groote Schuur Hospital, University of Cape Town, Observatory, South Africa.

Ebiomedicine
|February 13, 2016
PubMed

Insights

Pericardial tuberculosis drug levels were measured for the first time. Key anti-TB drug concentrations in pericardial fluid were below effective levels, potentially explaining high treatment failures in this serious infection.

Area of Science:

  • Infectious Diseases
  • Pharmacokinetics
  • Tuberculosis Research

Background:

  • Pericardial tuberculosis (TB) presents significant challenges with high rates of treatment failure and mortality.
  • Effective antibiotic therapy requires sufficient drug concentrations at the infection site, penetrating the bacteria to inhibit intracellular processes.
  • Previous studies have lacked measurements of antibiotic concentrations within pericardial fluid for TB pericarditis.

Purpose of the Study:

  • To quantify anti-tuberculosis drug concentrations in pericardial fluid.
  • To compare these concentrations with minimum inhibitory concentrations (MICs) of Mycobacterium tuberculosis.
  • To investigate drug pharmacokinetics, protein concentrations, and pH in pericardial fluid during TB pericarditis.

Main Methods:

  • Two cohorts of TB pericarditis patients were enrolled, with indwelling pigtail catheters for serial drug concentration measurements over 24 hours.
  • Pharmacokinetic analyses were performed on 704 drug concentration measurements.
  • Drug concentrations in pericardial fluid were compared to MICs of clinical Mycobacterium tuberculosis isolates, alongside measurements of protein concentration and pH.

Main Results:

  • Rifampicin and ethambutol concentrations in pericardial fluid were significantly lower than MICs, with non-protein bound concentrations being particularly low.
  • Pyrazinamide peak concentrations were substantially below the MIC at physiological pericardial fluid pH.
  • Isoniazid concentrations in pericardial fluid were comparable to plasma and remained above MIC.

Conclusions:

  • This study provides the first measurements of anti-TB drug concentrations, pH, and protein levels in pericardial fluid.
  • Sub-therapeutic concentrations of key sterilizing anti-TB drugs (rifampicin, ethambutol, pyrazinamide) in pericardial fluid may contribute to poor treatment outcomes.
  • Development of novel therapeutic regimens may be necessary to overcome these pharmacokinetic limitations in treating pericardial TB.

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