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Indian Journal of Medical Research 2017-Apr

Food significantly reduces plasma concentrations of first-line anti-tuberculosis drugs.

Vetëm përdoruesit e regjistruar mund të përkthejnë artikuj
Identifikohuni Regjistrohu
Lidhja ruhet në kujtesën e fragmenteve
Agibothu Kupparam Hemanth Kumar
Vedachalam Chandrasekaran
Angadi Kiran Kumar
M Kawaskar
J Lavanya
Soumya Swaminathan
Geetha Ramachandran

Fjalë kyçe

Abstrakt

OBJECTIVE

Concomitant feeding and anti-tuberculosis (TB) drug administration are likely to reduce nausea and enhance compliance to treatment. However, food could lower plasma drug concentrations. This study was undertaken to examine the effect of food on two-hour plasma concentrations of rifampicin (RMP), isoniazid (INH) and pyrazinamide (PZA), and pharmacokinetics of these drugs in adult TB patients.

METHODS

Newly diagnosed adult TB patients were recruited from the Revised National Tuberculosis Control Programme (RNTCP) treatment centres in Chennai Corporation, Chennai, India. Two-hour post-dosing plasma concentrations were determined in 25 patients, and a semi-intensive pharmacokinetic study was undertaken in six patients. RMP, INH and PZA concentrations were determined by high-performance liquid chromatography.

RESULTS

The geometric mean two-hour concentrations with food and under fasting conditions were 2.2 and 5.5 μg/ml for RMP (P<0.001), 3.9 and 11.3 μg/ml for INH (P<0.001), and 18.0 and 28.2 μg/ml for PZA (P<0.001), respectively. Drug administration with food caused the plasma concentration to decrease by 50, 45 and 34 per cent for RMP, INH and PZA, respectively. Significant decreases in peak concentrations and exposures of drugs and delay in time to attain peak concentrations of drugs when taken with food were also observed.

CONCLUSIONS

Our findings showed that food lowered anti-TB drug concentrations significantly and delayed absorption. Patients may be explained the beneficial effects of taking anti-TB drugs in a fasting state and advised to do so. There is a need for more research on optimization of dosing to maximize efficacy and safety of currently used drugs.

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