Abstract
Standard short-course regimens for tuberculosis are used worldwide with very few problems. Unfortunately, the emergence of multiple drug-resistant tuberculosis in many parts of the world is leading to a diversification of drug regimens and to the use of drugs that are more toxic per se and more likely to interact with others. In addition, the treatment of HIV/AIDS patients with tuberculosis or disease due to Mycobacterium avium-intracellulare complex (MAC) infection with new drugs and multidrug regimens has added to the problem of drug interactions, especially as such patients may often be receiving concomitant treatment for a range of bacterial, fungal and viral infections. In general, there are very few clinically significant interactions between the first-line antituberculosis drugs themselves, although problems of bioavailability, notably of rifampicin (rifampin), have been encountered in the manufacture of combination tablets. Of the first-line drugs used to treat tuberculosis, i.e. rifampicin, isoniazid and pyrazinamide, rifampicin is particularly likely to cause clinically significant drug interactions as it is a potent inducer of the cytochrome P450 enzyme group, which is involved in the metabolism of many drugs, in particular oral contraceptives, corticosteroids, oral anticoagulants and cyclosproin. The use of quinolones to treat multiple drug-resistant tuberculosis and AIDS-related MAC disease raises further problems of drug interactions as, in contrast to rifampicin, these drugs inhibit some cytochrome isoenzymes, leading to reduced metabolism of certain drugs.
MeSH Terms
Absorption/drug effects
Antitubercular Agents/pharmacokinetics,pharmacology,therapeutic use
Biotransformation/drug effects
Cytochrome P-450 Enzyme System/metabolism
Drug Interactions
Drug Therapy, Combination
Enzyme Induction/drug effects
Humans
Isoenzymes/metabolism
Isoniazid/pharmacokinetics,pharmacology,therapeutic use
Quinolones/pharmacokinetics,pharmacology,therapeutic use
Rifabutin/pharmacokinetics,pharmacology,therapeutic use
Rifampin/pharmacokinetics,pharmacology,therapeutic use
Tissue Distribution/drug effects
Tuberculosis/drug therapy
Chemicals
Antitubercular Agents
Isoenzymes
Quinolones
Rifabutin
Cytochrome P-450 Enzyme System
Isoniazid
Rifampin
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Grange J M
Department of Microbiology, National Heart and Lung Institute, London, England.
Winstanley P A
Davies P D
References (32)
32 references, click to expand
-
Uveitis and pseudojaundice during a regimen of clarithromycin, rifabutin, and ethambutol. MAC Study Group of the Canadian HIV Trials Network.
N Engl J Med. 1994 Feb 10;330(6):438-9
PMID: 8284019
-
Quinolones and penicillins incompatibility.
DICP. 1989 Jan;23(1):91-2
PMID: 2718494
-
[Potentiation of a vitamin K antagonist by a pefloxacin-rifampicin combination].
Ann Fr Anesth Reanim. 1986;5(3):320-1
PMID: 3777560
-
Interactions and toxicities of drugs used in patients with AIDS.
Clin Infect Dis. 1992 Mar;14(3):773-9
PMID: 1314104
-
Antiepileptic drugs. A review of clinically significant drug interactions.
Drug Saf. 1993 Sep;9(3):156-84
PMID: 8240723
-
Effects of antacids on the clinical pharmacokinetics of drugs. An update.
Clin Pharmacokinet. 1990 Mar;18(3):210-9
PMID: 1969784
-
Isoniazid-induced enflurane defluorination in humans.
Anesthesiology. 1982 Jul;57(1):5-8
PMID: 7091722
-
Interaction between fluconazole and rifampicin.
BMJ. 1990 Oct 6;301(6755):818
PMID: 2224282
-
Medical management of AIDS patients. Tuberculosis and nontuberculous mycobacterial disease.
Med Clin North Am. 1992 Jan;76(1):121-71
PMID: 1727535
-
Effect of prednisolone and rifampin on isoniazid metabolism in slow and rapid inactivators of isoniazid.
Antimicrob Agents Chemother. 1980 Nov;18(5):661-6
PMID: 7447424
-
Drug interaction between rifampicin and cotrimoxazole in patients with tuberculosis.
Hum Exp Toxicol. 1991 Nov;10(6):419-21
PMID: 1687853
-
Isoniazid and ethionamide serum levels and inactivation in Finnish subjects.
Scand J Respir Dis. 1969;50(2):110-24
PMID: 5195839
-
Cations in the didanosine tablet reduce ciprofloxacin bioavailability.
Clin Pharmacol Ther. 1993 Mar;53(3):292-7
PMID: 8453847
-
Randomized, placebo-controlled trial of rifampin, ethambutol, and ciprofloxacin for AIDS patients with disseminated Mycobacterium avium complex infection.
J Infect Dis. 1993 Jul;168(1):112-9
PMID: 8515098
-
New concepts for the control of tuberculosis in the twenty first century.
J R Coll Physicians Lond. 1993 Jul;27(3):218-23
PMID: 8377152
-
Quinidine-rifampin interaction.
N Engl J Med. 1981 Jun 11;304(24):1466-9
PMID: 7231477
-
The action of antituberculosis drugs in short-course chemotherapy.
Tubercle. 1985 Sep;66(3):219-25
PMID: 3931319
-
Possible interaction of ciprofloxacin with cyclosporin A.
J Antimicrob Chemother. 1988 May;21(5):679-80
PMID: 3292498
-
Drug interactions with quinolones.
J Antimicrob Chemother. 1990 Nov;26 Suppl D:7-29
PMID: 2286594
-
Drug interactions of clinical significance with opioid analgesics.
Drug Saf. 1993 Jan;8(1):30-48
PMID: 8471186
-
Rapid metabolism of cyclosporin and prednisone in kidney transplant patient receiving tuberculostatic treatment.
Lancet. 1983 Oct 29;2(8357):1031
PMID: 6138578
-
The effects and side effects of cyclosporine: relationship to drug pharmacokinetics.
Transplant Proc. 1982 Dec;14 (4):659-61
PMID: 6762722
-
Catastrophic deterioration in asthma induced by rifampicin in steroid-dependent asthma.
Respir Med. 1993 Nov;87(8):629
PMID: 8290748
-
Sucralfate significantly reduces ciprofloxacin concentrations in serum.
Antimicrob Agents Chemother. 1990 May;34(5):931-3
PMID: 2360833
-
Rifabutin in combination with clofazimine, isoniazid and ethambutol in the treatment of AIDS patients with infections due to opportunist mycobacteria. Groupe d'Etude et de Traitement des Infections à Mycobacteries Résistantes.
Tubercle. 1991 Sep;72(3):168-75
PMID: 1663282
-
Effect of pyrazinamide on rifampicin kinetics in patients with tuberculosis.
Tuber Lung Dis. 1993 Apr;74(2):87-90
PMID: 8324212
-
Effect of the addition of ciprofloxacin on theophylline pharmacokinetics in subjects inhibited by cimetidine.
Ann Pharmacother. 1992 Jan;26(1):11-3
PMID: 1606331
-
Potential warfarin-ciprofloxacin interaction in patients receiving long-term anticoagulation.
Pharmacotherapy. 1992;12(6):435-9
PMID: 1492006
-
Oral contraceptives. Are drug interactions of clinical significance?
Drug Saf. 1993 Jul;9(1):21-37
PMID: 8347289
-
Tuberculosis: commentary on a reemergent killer.
Science. 1992 Aug 21;257(5073):1055-64
PMID: 1509256
-
Drug combinations and the bioavailability of rifampicin.
Tubercle. 1990 Dec;71(4):241-5
PMID: 2267677
-
The potential clinical significance of the isoniazid acetylator phenotype in the treatment of pulmonary tuberculosis.
Tubercle. 1984 Sep;65(3):211-27
PMID: 6385429