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Bioavailability of rifampicin following concomitant administration of ethambutol or isoniazid or pyrazinamide or a combination of the three drugs.

BACKGROUND & OBJECTIVES: Poor bioavailability of rifampicin (R) in combination with other anti-tuberculosis drugs such as isoniazid (H), pyrazinamide (Z), and ethambutol (E) is a subject of much concern for the last few decades. This could be due to an interaction between R and other drugs. An investigation was therefore undertaken to examine the bioavailability of R in the presence of H, Z and E or a combination of the three drugs. METHODS: The study included eight healthy volunteers, each being investigated on four occasions at weekly intervals once with R alone and with three of the four combinations on the three remaining occasions. A partially balanced incomplete block design was employed and the allocation of R or the drug combinations was random. Plasma concentrations of R at intervals up to 12 h were determined by microbiological assay using Staphylococcus aureus as the test organism. The proportion (%) dose of R as R plus desacetyl R (DR) in urine excreted over the periods 0-8 and 8-12 h was also determined. Bioavailability was expressed as an index (BI) of area under time concentration curve (AUC) calculated from the plasma concentrations or proportion of dose of R excreted as R plus DR in urine with the combinations to that with R alone. RESULTS: The bioavailability indices based on AUC were 0.96 with RE, 0.76 with RH, 1.08 with RZ and 0.65 with REHZ. The indices based on urine estimations (0-8 h) were similar, the values being 0.94, 0.84, 0.94 and 0.75, respectively. A second investigation revealed that the decrease of bioavailability of R with H was not due to the excipients present in H tablets. INTERPRETATION & CONCLUSION: Isoniazid alone or in combination with E and Z reduces the bioavailability of R. Urinary excretion data offer a simple and non invasive method for the assessment of bioavailability of R.

Adolescent↗

[Comparison between bacteriophage-based assay and BACTEC-960 system in detection of ethambutol resistance in Mycobacterium tuberculosis].

OBJECTIVE: To set up phage amplified biologically assay (PhaB) for rapid detection ethambutol (EMB) resistance and to evaluate the use of PhaB in the detection of EMB resistance. METHODS: To detect the EMB resistance of 138 clinical isolates of Mycobacterium tuberculosis (MTB) by PhaB and compare it with the results of BACTEC-960 system. The minimal inhibitory concentration (MIC) was detected for all the discrepant isolates. RESULTS: Of all the 138 strains of MTB clinical isolates, 114 strains were EMB-susceptible and 24 strains were EMB-resistant with BACTEC-960 system while 118 strains were EMB-susceptible and 20 strains were EMB-resistant with PhaB. 112 of the 138 strains were EMB-susceptible and 18 strains were EMB-resistant with the two methods. The concordant isolates in determination of EMB resistance were 130 strains in the two methods and the concordance rate was 94.2%. The disconcordant isolates were 8 strains and the discrepancy rate was 5.8%. The sensitivity, specificity, positive and negative predictive value as well as overall accuracy for the PhaB assay was 75.0% (18/24), 98.2% (112/114), 90.0% (18/20), 94.9% (112/118) and 94.2% (130/138) respectively if the judgment standard was adopted by BACTEC-960 method. CONCLUSIONS: The PhaB assay can be used for detection of EMB resistance in isolates of MTB easily and quickly in three days. This method do not need special instrument and may be used in rapid screening method for EMB resistance of MTB.

Antitubercular Agents↗

The effect of ethambutol on mycobacterial cell wall permeability to hydrophobic compounds.

Ethambutol (EMB), the first line drug in the treatment of tuberculosis, is an inhibitor of the biosynthesis of the cell wall compound - arabinogalactan. It was found that EMB at sub-inhibitory concentration increases the permeability of the M. vaccae cell wall, which was monitored by cell sensitization to erythromycin and rifampicin. The high permeability of the cell wall to hydrophobic compounds allows enhanced intracellular bioconversion of beta-sitosterol to 4-androsten-3,17-dione (AD) and 1,4-androstadien-3,17-dione (ADD).

Anti-Bacterial Agents↗

Comparison of intermittent ethambutol with rifampicin-based regimens in HIV-infected adults with PTB, Kampala.

BACKGROUND: The human immunodeficiency virus (HIV) is a key factor responsible for the high rates of tuberculosis (TB) in sub-Saharan Africa. Treatment of TB with rifampicin (R, RMP) containing short-course regimens is highly effective in HIV-infected adults. We conducted a study to compare the efficacy and safety of intermittent ethambutol (E, EMB) with two RMP-containing regimens to treat pulmonary TB in HIV-infected patients. SETTING: National Tuberculosis Treatment Centre, Mulago Hospital, Kampala, Uganda. DESIGN: This was a prospective cohort compared to two non-randomised control groups. The study group and the two control arms were treated with 2 months of isoniazid (H), RMP, pyrazinamide (Z) and EMB followed by 6 E3H3 for the study group and 4HR or 6HR for controls. RESULTS: Between April 1993 and March 2000, 136 patients were enrolled in the 2EHRZ/E3H3 arm, 147 in the 2EHRZ/4HR arm and 266 in the 2EHRZ/6HR arm. The relapse rate was 18.2 per 100 person-years observation (PYO) for the study regimen compared to 9.7/100 PYO (P = 0.0063) and 4.8/100 PYO (P = 0.0001) in patients treated with 2 EHRZ/4HR or 2EHRZ/6HR, respectively. CONCLUSION: The 2EHRZ/6E3H3 regimen is safe and effective but has a significant risk of relapse.

AIDS-Related Opportunistic Infections↗

Ethambutol resistance testing by mutation detection.

OBJECTIVE: To identify chromosomal mutations that confer resistance to ethambutol (EMB) in Mycobacterium tuberculosis. DESIGN: Drug-resistant (n = 235) and drug-susceptible (n = 117) M. tuberculosis isolates collected from the Western Cape in South Africa were subjected to embB gene analysis and the results were compared to phenotypic EMB testing. RESULTS: Genotypic analysis identified mutations at codon 306 of the embB gene in 20% (47/235) of the resistant isolates in comparison to only 1.7% (4/235) of those that were phenotypically resistant to EMB by the agar diffusion method. No gene mutations were detected in susceptible isolates. Phenotypic retesting in BACTEC demonstrated that the 47 genotypically resistant isolates were phenotypically resistant to EMB. This implies that 91.4% (43/47) of EMB resistance had been phenotypically missed by routine laboratory procedures. EMB resistance was closely linked to multidrug resistance (MDR); 87.2% (41/47) of the EMB-resistant isolates were resistant to both isoniazid and rifampicin. A newly developed one-step amplification refractory mutation system polymerase chain reaction (ARMS-PCR) method correctly detected the EMB-resistant genotype. CONCLUSION: Implementation of more accurate diagnosis of EMB resistance may enhance patient management in South Africa, as standardised treatment of MDR-TB with second-line drugs is currently dependent on the outcome of the EMB resistance test.

Antitubercular Agents↗

[Combination of gentamycin and amikacin with rifampicin, ethambutol and isoniazid on selected standard strains of Mycobacterium species in experiments done in vitro and in vivo].

The authors present results of in-vivo and in-vitro studies of combined effect of gentamycin , amikacin and rifampicin , ethambutol, isoniazide on selected standard strains of Mycobacterium sp. (Myc. H37Rv, Myc. An5, Myc. wells, Myc. kirchberg, Myc. kansasii, Myc. intracellulare, and Myc. fortuitum). In in-vitro studies the synergistic effect of gentamycin and amikacin with the tuberculostatic drugs was demonstrable on all Mycobacterium strains. The weakest effect was seen on Myc. fortuitum colonies. In-vivo studies have also shown this synergistic effect on all studied strains, and a much weaker effect when used in monotherapy. The authors have shown the possibility of using combination of gentamycin and amikacin with RMP, EMB, INH in treating Myc. intracellulare infections.

Amikacin↗

The incidence of optic neuropathy in 84 patients treated with ethambutol.

The authors examined 84 patients with pulmonary TBC treated with ethambutol (25 mg/Kg/die). The patients were divided into two groups on the basis of zinc plasma levels: 53 patients with zinc plasma level greater than 1 mg/l and 31 with zinc plasma levels less than 0.7 mg/l. The two groups underwent periodical follow-up of visual acuity, fundus, color vision (Fransworth 100 HUE) and visual field. The checks were monthly on the first group and fortnightly in the second. Eight patients presented signs of optic neuropathy. Patients with lower zinc plasma levels showed a higher percentage of optic neuropathy.

Adolescent↗

[Ethambutol pharmacokinetics in pulmonary tuberculosis patients].

Specific features of ethambutol pharmacokinetics were studied in 53 patients with first detected pulmonary tuberculosis. Pharmacokinetic parameters were interpreted by using an one-part model with absorption. Pharmacokinetic parameters Cmax, Me infinity were shown to be distributed according to a normal law of distribution of probabilities, Kel--according to a logarithmically normal law.

Adult↗

[Liver and kidney damage in rifampicin and ethambutol treatment].

Case report on a 40 years old patient with pulmonary tuberculosis, in whom a treatment with Rifampicin plus Ethambutol has caused a transient hepatic and renal failure. By histology a chronic aggressive hepatitis and a destruction of renal tubular epithelium could be found. The etiologic role of Rifampicin is believed to be probable. Pathomechanism and differential diagnosis are discussed.

Adult↗

[Prevention of ocular toxicity of ethambutol: study of zincaemia and chromatic analysis (author's transl)].

In order to define the means of prevention of the ocular toxicity of ethambutol (EMB), 72 patients under treatment with EMB-INH-Rifampicin combination were subjected to systematic analysis of plasma, blood and urinary zinc levels together with a full ophthalmic examination. Comparison of the results from 12 patients sustaining ocular damage at the time of treatment with the results of 60 others: 1) demonstrates the existence of a correlation between plasma zinc levels before treatment and the probability of ocular damage from EMB (high risk for zinc is less than 0.70 mg/l - almost no risk for zinc greater than 1 mg/l); 2) confirms that dyschromatopsia is one of the first signs of ocular damage through EMB and thus constitutes an alarm signal; 3) suggests that the ocular toxicity of EMB might appear in the retina before the optic nerve.

Adult↗

[Pyrazinamide versus ethambutol in short-term therapy of lung tuberculosis. A randomized study].

Recent experience suggests that the duration of chemotherapy of tuberculosis can be shortened to 6-9 months, without an increase in the relapse rate, if the treatment if started with 3 or 4 drugs including isoniazid (INH), rifampicin (RMP) and pyrazinamide (PZA). In a controlled study of culture-positive advanced pulmonary tuberculosis we have compared treatment regimens with PZA in a dosage of less than 2 g and with ethambutol (EMB). 113 patients were given, in random order for 2-3 months, either PZA (25 mg/kg body weight) or EMB (25 mg/kg) together with RMP (450 or 600 mg) and INH (5 mg/kg). The last two drugs were given for a total of 9 months. Patients treated with PZA showed a (not significantly) earlier conversion to negative cultures after an average of 7 weeks. After 18 months follow-up there have been no relapses on these regimens. 2 patients, both treated with EMB, did not respond to therapy. Drug-induced hepatitis was seen in 5 patients with PZA and in 2 patients with EMB. The hepatitis was always observed during the first month of therapy and was fully reversible. Three of the 4 patients with clinically apparent hepatitis were over 70 years of age. Three patients with elevated uric acid levels had arthralgia which led in one of them to termination of therapy. The preliminary results of our study show that the treatment regimen with PZA does not lead to a higher rate of side effects if used with particular moderation in older patients.

Adult↗

Tuberculosis treated with rifampicin, ethambutol and isoniazid: Danish tuberculosis trial 1972-1974.

A total of 577 Danish patients with tuberculosis were observed for a period of 5 years. A primary phase of treatment with 300 mg Isoniazid (INH), 450 mg Rifampicin (RMP) and 1200 mg Ethambutol (EMB) daily for 3 months was followed by administration of either INH+RMP or INH+EMB for 12 or 18 months after conversion. During the initial period the number of bacteria decreased rapidly, even in patients with the most severe tuberculosis, and all patients became culture negative. There was no significant difference in efficacy of RMP and EMB in the secondary phase. One of the 577 patients again became positive during the follow-up period, but there were no bona fide cases of relapse among patients who completed the treatment.

Adolescent↗

[Ophthalmologic control examinations during therapy with ethambutol (author's transl)].

Report on 6,200 control examinations of patients treated with Ethambutol. Subjective troubles of vision do not influence continuation of therapy. In 8 patients (0,5%) symptoms of neuritis nervioptici accompanied with visus deterioration required to stop therapy (case reports on these 8 patients). Ophthalmologic control examinations are recommended before beginning therapy, during continuous therapy in hospital every eight week, and in case of ambulatory intermitting therapy every third to fourth month.

Aged↗

Ethambutol-induced toxic epidermal necrolysis.

Toxic epidermal necrolysis (TEN) is a severe cutaneous reaction that most commonly is related to drug exposure and that clinically can be confused with other bullous dermatoses, particularly staphylococcal scalded skin syndrome (SSSS) and erythema multiforme major (the Stevens-Johnson syndrome). We report the first case, to our knowledge, of TEN associated with ethambutol hydrochloride administration. Toxic epidermal necrolysis can be partially differentiated from other bullous dermatoses by history and clinical presentation. Microbiological results (eg, the isolation of Staphylococcus aureus in SSSS) and immunological studies (eg, the demonstration of immune complexes in the Stevens-Johnson syndrome) may aid in differentiation, but ultimately the diagnosis depends on histopathological examination of involved skin.

Aged↗

Recognition of the lipid intermediate for arabinogalactan/arabinomannan biosynthesis and its relation to the mode of action of ethambutol on mycobacteria.

Despite major advances in our understanding of the structure of mycobacterial cell walls, little is known of their biogenesis, and yet they are the site of action of many anti-tuberculosis drugs and implicated in much of the pathology of tuberculosis and leprosy. A family of monoglycosyl polyprenylphosphates was isolated from Mycobacterium smegmatis, containing arabinose, ribose, and mannose. The isoprenoid nature of the lipid components was established by 1H NMR, and fast atom bombardment mass spectroscopy (FAB-MS) demonstrated the presence of C50 decaprenyl-P derivatives and smaller amounts of the C35 octahydroheptaprenyl-P products. The configuration of the mycobacterial decaprenol was established as mono-trans, octa-cis, pointing to carriers of unusual structure. Combined gas chromatography (GC)/MS, FAB-MS/MS, and 1H NMR allowed characterization of one of the primary components as beta-D-arabinofuranosyl-1-monophosphodecaprenol. Pulse-chase metabolic labeling of cells with D-[14C]glucose indicated that the decaprenyl-P-arabinose is an active intermediate in the biosynthesis of the arabinan of cell wall arabinogalactan and arabinomannan. The identification of polyprenyl-P-ribose suggests the existence of ribose-containing polysaccharides in the cell walls of M. smegmatis or/and of a novel epimerase in the D-arabinose biosynthetic pathway. Ethambutol, a powerful anti-tuberculosis drug known to inhibit arabinogalactan and arabinomannan biosynthesis, results in the rapid accumulation of decaprenyl-P-arabinose, indicating that the drug interferes with either the transfer of arabinose from the donor or, alternatively, the synthesis of the arabinose acceptor itself.

Arabinose↗

Bactericidal action of pulsed exposure to rifampicin, ethambutol, isoniazid & pyrazinamide on Mycobacterium tuberculosis in vitro.

The bactericidal action of pulsed exposure to rifampicin (R), ethambutol (Emb), isoniazid (I) and pyrazinamide (Z) together on alternate days (REmbIZ) and as REmb and IZ separately on alternate days (REmb/IZ) on M.tuberculosis H37Rv, two isolates of M.tuberculosis sensitive to these drugs, as well as four isolates resistant to one or more drugs, was studied using an in vitro method. The experimental duration was 6 days. REmbIZ and REmb/IZ appeared to have equally good bactericidal action on M.tuberculosis strains in the in vitro system. The results suggest that splitting REmbIZ into REmb and IZ on alternate days in short course chemotherapy regimens for tuberculosis may not affect the bactericidal action of the regimens.

Antitubercular Agents↗

Histopathology of experimental ethambutol intoxication.

Ethambutol was administered to albino rats in their drinking water in doses of 105 to 2,500 mg. per kilogram per day for 18 to 102 days. Sixteen per cent developed bilateral lesions consisting of focal axonal swelling without demyelination, in their optic chiasms and the intracranial portions of their optic nerves.

Animals↗

Relationship between lipid composition and antibiotic-resistance to isoniazid, streptomycin, p-aminosalicylic acid, ethambutol, rifampicin in mycobacteria.

The content of neutral lipids, peptido-glycolipids and phospholipids, separated by solvent extractions and TLC, was investigated and compared in various strains of Mycobacterium tuberculosis and in Mycobacterium avium. The examined strains could be divided into two groups: (i) those possessing a stable INH-resistance with a chromosomal location for the resistance genes, in which the content of total lipids and the distribution of lipid subfractions were modified with respect to the control strain H37Rv; (ii) those strains, such as the mutants resistant to streptomycin (Sm), ethambutol (EM), p-aminosalicylic acid (PAS) and rifampicin (R/AMP), uncorrelated drugs with different genetic location of the antibiotic-resistance, in which a disturbance of the lipid metabolism does not appeared to be significant. TLC and chemical analysis of INH-mutants suggested that the decrease of the cell lipids was associated with the peptidoglyco-phospholipid fraction, while the neutral lipids were characterized by a most elevated amount of both menaquinone-9 and free fatty acids, and by comparable levels of both glycerides and total fatty acids with respect to the sensitive strain. In the pattern of fatty acid shorter than C26 of all the fractions studied, no significant differences were observed between the H37Rv strain and the other resistant strains, including the M. avium. In the course of the lipid analysis no unusual phospholipids in addition to CL, PE and phosphatidylinositol-oligo-mannoside (PIM) were detected. Reasoning in a speculative way, the dramatic fall of the complex lipid elaboration in the INH-resistant mycobacteria, may underline a role for these substances in the envelope of the mycobacterial cell that defends itself from the selecting attack of the antibiotic molecule and that keeps this phenotypic expression of INH-resistance in the mutants.

Aminosalicylic Acids↗