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Preventive chemotherapy of tuberculosis in Cornell model mice with combinations of rifampin, isoniazid, and pyrazinamide.

The efficacies of rifampin-containing preventive regimens were measured in Cornell model mice in which an initially severe infection with Mycobacterium tuberculosis H37Rv was first treated for 7 weeks with 25 mg of isoniazid and 1,000 mg of pyrazinamide per kg of body weight in the diet and then with one of four test regimens given by daily oral gavage for 6 weeks. These regimens were 15 mg of rifampin per kg alone (R), rifampin plus 25 mg of isoniazid per kg (RH), rifampin plus 150 mg of pyrazinamide per kg (RZ), or rifampin plus isoniazid and pyrazinamide (RHZ). The interval between the rifampin gavage and the gavage with the other drugs ranged from 10 to 45 min, so that interference with rifampin absorption did not occur. Mice were sacrificed at 11 and 20 weeks after the termination of chemotherapy, with each killing being preceded by 3 weeks of high-dose dihydrocortisone treatment. Entire spleens and lungs were cultured. The proportions of mice with positive spleens at either killing time were 74% of 43 mice treated with R, 63% of 41 mice treated with RH, 65% of 43 mice treated with RZ, and 53% of 45 mice treated with RHZ, a just significant (P = 0.04) trend for fewer positive spleens with increasing numbers of drugs in the regimen. However, no trend was found in the corresponding proportions of mice with positive spleens or lungs, which were 81, 63, 65, and 71% for mice treated with R, RH, RZ, and RHZ, respectively. Thus, in the Cornell model, R alone, RH, RZ, and RHZ all had similar efficacies.

Animals↗

Radiometric method for testing susceptibility of mycobacteria to pyrazinamide in 7H12 broth.

The test of susceptibility to pyrazinamide requires an acid environment (pH less than or equal to 5.5). This, however, is not favorable to the growth of Mycobacterium tuberculosis, especially in solid agar media. To obviate this difficulty, we developed a testing method with 7H12 broth medium and based on radiometric readings of the growth. The radiometric method employed in this study (BACTEC system) provides an opportunity to detect the dynamics of growth by daily recording of the growth index, which reflects the metabolic activity of the multiplying bacteria. In our technique, M. tuberculosis isolates were initially cultivated at pH 6.8. After logarithmic growth had begun, phosphoric acid solution was added to obtain pH 5.5. When pyrazinamide was added simultaneously with the acid, the growth index of susceptible cultures decreased, whereas it continued to increase in pH 5.5 control vials and in tests with pyrazinamide-resistant strains.

Amidohydrolases↗

Evaluation of a bacteriophage-based assay (phage amplified biologically assay) as a rapid screen for resistance to isoniazid, ethambutol, streptomycin, pyrazinamide, and ciprofloxacin among clinical isolates of Mycobacterium tuberculosis.

Rapid molecular assays for the detection of mutations associated with rifampin resistance in Mycobacterium tuberculosis are commercially available. However, they are complex and expensive and have predictive values of 90 to 95%. Molecular assays for other drugs are less predictive of resistance. Ideally, assays based on phenotypic markers should be used for susceptibility testing, but these can take weeks to complete. We previously described a rapid phenotypic assay, the phage amplified biologically (PhaB) assay, for the rapid determination of rifampin and isoniazid susceptibility in clinical isolates of M. tuberculosis. In this study, we extended the assay to the study of ethambutol, pyrazinamide, streptomycin, and ciprofloxacin. After the optimization of antibiotic concentrations and incubation conditions, the assay was applied to each drug for a total of 157 isolates. The correlations between the results of the PhaB assay and the resistance ratio method were 94% for isoniazid, 96% for streptomycin, 100% for ciprofloxacin, 88% for ethambutol, and 87% for pyrazinamide. For ciprofloxacin, ethambutol, and pyrazinamide, significantly better correlations were found when a 90% reduction in plaque count was used as the cutoff. Turnaround times for the PhaB assay were 2 to 3 days, compared with 10 days for the resistance ratio method. We believe that this low-cost assay may have widespread applicability for the rapid screening of drug resistance in M. tuberculosis isolates, especially in developing countries.

Antitubercular Agents↗

The blood/cerebrospinal fluid partitioning of pyrazinamide: a study during the course of treatment of tuberculous meningitis.

Concentrations of pyrazinamide were measured in serum and cerebrospinal fluid (CSF) of 17 adult patients with tuberculous meningitis up to six months after starting treatment. Pyrazinamide penetrated excellently into the CSF and mean concentrations at various intervals up to six months of treatment were consistently above that required for inhibition of the growth of Mycobacterium tuberculosis. The blood/CSF partitioning of pyrazinamide does not change as the patients recover from the meningitis.

Adolescent↗

[Use of pyrazinamide as an indicator of tuberculosis epidemiology in Castilla-La Mancha].

OBJECTIVE: To describe the use of tuberculostatic drugs in Castilla-La Mancha Spanish region along the 1999-2000 period; to estimate the number of persons who received tuberculosis treatment in 1999 and 2000; and to compare the results with the case reporting data. METHOD: The pyrazinamide use data in Castilla-La Mancha along the 1999-2000 period were obtained from the Spanish Health Ministry. The defined daily dose and the daily dose per inhabitant were used as measures for comparison. The number of persons who had received treatment was calculated and this figure was compared with the case reporting of tuberculosis respiratory, tuberculosis, other types and tuberculous meningitis. RESULTS: The incidence of registered tuberculosis cases was 192 and 182 cases in 1999 and 2000, respectively, with rates of 11.07 and 10.49 cases per 100,000 population. In 1999 and 2000, 388 and 389 people (22.41 and 22.43 cases per 100,000 population) received treatment with pyrazinamide in Castilla-La Mancha, respectively, which suggests that the rate of registered tuberculosis can show an underreporting of 50%. CONCLUSIONS: An important tuberculosis underreporting is detected, with large differences between the different provinces. Pyrazinamide use is probably the better indicator to estimate the minimum incidence of tuberculosis.

Antitubercular Agents↗

Two cases in whom pyrazinamide does not inhibit the uricosuric action of benzbromarone.

The 2 subjects were a diabetic male with renal hypouricemia and a healthy male with normouricemia. In these subjects, 200 mg of benzbromarone increased fractional uric acid clearance (FUa) and 3.0 g of pyrazinamide decreased FUa. However, pyrazinamide did not inhibit the uricosuric action of benzbromarone at all on the administration of 3.0 g of pyrazinamide together with 200 mg of benzbromarone. These results indicated that in these cases, the relative role of each component could not be determined on the basis of the hypothetical four-component model.

Adult↗

Pulmonary tuberculosis treated with isoprodian and rifampicin or pyrazinamide.

Three regimens of 9 months' duration, 2 containing Isoprodian (isoniazid, prothionamide and dapsone) and either rifampicin or pyrazinamide and the third, a former standard regimen, isoniazid, streptomycin and pyrazinamide, were allocated at random to 436 untreated African tuberculosis patients. In the course of the trial 83 were excluded for various reasons and 93 were lost. After 3 months of hospitalization, patients took either Isoprodian or isoniazid at home for 6 months and were then followed up for 24 months. The Isoprodian plus rifampicin regimen achieved 97% bacteriological cure, the Isoprodian plus pyrazinamide regimen 86% and the standard regimen 91%. Of 35 patients found to harbour drug-resistant strains 22 were cured. There were 15 relapses in all. Absconding was the most common cause of failure.

Adult↗

Comparative bioavailability of isoniazid, rifampin, and pyrazinamide administered in free combination and in a fixed triple formulation designed for daily use in antituberculosis chemotherapy. I. Single-dose study.

A comparative bioavailability study of the antituberculosis drugs isoniazid, rifampin, and pyrazinamide was carried out in a group of 10 healthy volunteers after administration of the three compounds, once in individual association and once in a combined, fixed preparation. The investigation was designed as an open, crossover study where each subject received five tablets of a preparation containing 50 mg isoniazid, 120 mg rifampin, and 300 mg pyrazinamide (corresponding to a total dose of 250 mg isoniazid, 600 mg rifampin, and 1,500 mg pyrazinamide). The same doses were administered in the session where the drugs were combined using the individual formulations. For each subject and experimental session, 15 blood samples were collected over a period of 24 h, and the plasma concentrations of the three drugs were assessed. The results indicated the absence of negative pharmacokinetic interactions between the drugs when administered in both free and this new, fixed combination.

Adult↗

Comparative bioavailability of isoniazid, rifampin, and pyrazinamide administered in free combination and in a fixed triple formulation designed for daily use in antituberculosis chemotherapy. II. Two-month, daily administration study.

The time course of the plasma concentrations of isoniazid, rifampin, and pyrazinamide was assessed in a group of 13 patients with lung tuberculosis treated over a period of 2 months on a continuous daily basis with a fixed triple combination of the same drugs. The blood kinetics of the three antituberculosis drugs were determined on Days 1, 15, 30, and 60 of treatment. The triple combination employed in this study contained 50 mg isoniazid, 120 mg rifampin, and 300 mg pyrazinamide per tablet, the number of tablets ranging from four to seven per day according to the body weight of the patients. Almost superimposable plasma concentration curves for isoniazid were observed during the 4 days of the study. For rifampin, a fall in the plasma concentrations at the time intervals after the peak was observed comparing the data on Day 1 with those on Days 15, 30, and 60, which did not differ from each other. This finding is thought to be due to the well-known phenomenon of self-induction, which leads to an increased rate of disposal of the antibiotic from the blood compartment within the first and second weeks of continuous treatment. For pyrazinamide, an equilibrium in the opposite sense as that of rifampin seemed to take place within the 2 months of the study. Because of the relatively high plasma levels observed 24 h after each administration, an increase in plasma concentrations with respect to those observed on Day 1 was found on Days 15, 30, and 60, the levels on these days no differing from each other.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Pyrazinamide and rifampin vs isoniazid for the treatment of latent tuberculosis: improved completion rates but more hepatotoxicity.

CONTEXT: American Thoracic Society guidelines recommend a 9-month course of therapy with isoniazid for treatment of persons with latent tuberculosis infection who are at high risk for reactivation of disease. Major liver injury has been reported with the alternative regimen, a 2-month course of pyrazinamide and rifampin. OBJECTIVE: To evaluate the rate of completion and incidence of hepatotoxicity of a short regimen of pyrazinamide and rifampin for latent tuberculosis as compared with standard isoniazid therapy before and after instituting an intensive monitoring program. DESIGN, SETTING, AND PARTICIPANTS: Prospective cohort study of 224 patients in a community setting between 1999 and 2001. INTERVENTIONS: Daily pyrazinamide and rifampin for 2 months or daily isoniazid for 6 months. MAIN OUTCOME MEASURES: Treatment completion, hepatotoxicity (fourfold increase of alanine transaminase [ALT]), severe hepatotoxicity (40-fold increase in ALT). RESULTS: Treatment was completed by 71% (78 of 110 patients) in the pyrazinamide/rifampin group and by 59% (67 of 114 patients) in the isoniazid group (p = 0.07). Hepatotoxicity (ALT > 160 U/L) was documented in 13% (14 of 110 patients) in the pyrazinamide/rifampin group and in 4% (5 of 114 patients) in the isoniazid group (p = 0.03). Severe hepatotoxicity (ALT > 1,600 U/L) occurred in 2 of 43 patients (5%) receiving pyrazinamide/rifampin prior to instituting intensive monitoring. Once more intensive monitoring of liver enzymes was implemented, severe hepatotoxicity occurred in none of 67 patients. CONCLUSION: The risk of hepatitis in patients receiving pyrazinamide/rifampin for prevention of latent tuberculosis is increased threefold as compared to patients receiving isoniazid. When patients were monitored more intensively, severe hepatotoxicity did not develop, but the difference did not reach statistical significance (p = 0.15).

Adolescent↗

Limited tolerability of levofloxacin and pyrazinamide for multidrug-resistant tuberculosis prophylaxis in a solid organ transplant population.

STUDY OBJECTIVE: To determine the long-term tolerability of prophylactic administration of pyrazinamide and levofloxacin in patients possibly exposed to multidrug-resistant tuberculosis (MDRTB) after undergoing solid organ transplantation. DESIGN: Retrospective analysis. SETTING: Community outpatient clinic. PATIENTS: Forty-eight recipients of solid organ transplants beginning prophylaxis for MDRTB during August 1999 after possible exposure to a single index case of multidrug-resistant Mycobacterium tuberculosis within our community INTERVENTION: Prophylaxis consisted of pyrazinamide 30 mg/kg/day plus levofloxacin 500 mg/day, administered for 1 year. MEASUREMENTS AND MAIN RESULTS: Thirteen (27.1%) of the 48 patients completed therapy; 27 (56.3%) discontinued therapy within 4 months due to adverse drug events. Gastrointestinal intolerance was the major adverse event resulting in early discontinuation. CONCLUSION: Prophylaxis of MDRTB with levofloxacin and pyrazinamide was associated with limited tolerability due to the high frequency of adverse events. While we search for a better tolerated prophylactic regimen, close monitoring for adverse reactions is recommended.

Anti-Infective Agents↗

Artificial neural networks to optimize formulation components of a fixed-dose combination of rifampicin, isoniazid and pyrazinamide in a microemulsion.

The aim of this study to design a stable microemulsion formulation to deliver a combination of rifampicin, isoniazid and pyrazinamide in quantities suitable for administration to a paediatric population. The chemical stability of rifampicin, isoniazid and pyrazinamide alone and in various combinations was investigated in different solvents, solubilizing agents and surfactants. An artificial neural network was used to model data from the stability studies and a sensitivity analysis was applied to optimize the selection of the formulation components. Imwitor 308 and Crillet 3, exhibiting the highest overall positive sensitivity were selected to formulate the stable microemulsion. Due to drug dose specifications and solubility limitations, the final formulation contained only rifampicin and isoniazid, since the solubility of pyrazinamide in the lipid and aqueous components of the microemulsion did not achieve the required dose. The stability and solubility of rifampicin were improved in the formulation. Solubilization of the rifampicin in the lipid droplets of the internal phase and lipophilic chains of the surfactants increased the quantity of rifampicin that can be incorporated, while protecting it from oxidative degradation and also limited its contact with isoniazid, which has been shown to affect its stability. The results of this study indicate that the Artificial Neural Network can be successfully used to optimize the choice of solvents, solubilizing agents and surfactants prior to formulation of the microemulsion, limiting the amount of experiments, thus reducing the costs during the preformulation study.

Antibiotics, Antitubercular↗

Hypersensitivity hepatitis due to pyrazinamide.

Pyrazinamide hepatotoxicity is considered secondary to a direct and dose-related toxic effect. At currently used doses, pyrazinamide provides effective short-term treatment and is free from serious side effects. We report a case of pyrazinamide-induced hepatitis for which the rechallenge data strongly suggest a hypersensitivity mechanism.

Acute Disease↗

Bioavailability of rifampicin, isoniazid and pyrazinamide in a triple drug formulation: comparison of plasma and urine kinetics.

SETTING: The present study assesses bioavailability indices for rifampicin, isoniazid and pyrazinamide when administered to healthy volunteers separately or in a fixed triple-drug formulation, Rifater 125 SCT. OBJECTIVE: To compare the pharmacokinetics of rifampicin, isoniazid and pyrazinamide based on their blood concentrations up to 12 hours with the proportions of the doses of the drugs and their metabolites excreted in urine up to 12 hours, and to assess the bioavailability indices for the free and fixed triple drug formulations. DESIGN: An open cross-over study was conducted in 18 healthy volunteers with normal hepatic and renal functions to whom the drug combinations were administered in free and fixed dose formulations a week apart, to the same subject. RESULTS: Concentrations of the three drugs/metabolites were assessed in blood and urine. The results indicated the absence of negative pharmacokinetic interactions between the drugs when administered in both the free and the new fixed triple drug formulation. CONCLUSION: Human bioavailability studies provide direct straightforward information, particularly when studying compounds such as rifampicin and other major anti-tuberculosis drugs. The results of the present study indicate that the pharmacokinetic properties of rifampicin, isoniazid and pyrazinamide as assessed after individual and combined administration do not change when combined in a single pharmaceutical preparation. The bioavailability indices calculated based on plasma concentrations and urinary levels for all three drugs compared well.

Adult↗

Treatment of isoniazid-resistant tuberculosis with isoniazid, rifampin, ethambutol, and pyrazinamide for 6 months.

SETTING: In 1992 the Seattle-King County Department of Public Health Tuberculosis Clinic began to treat patients with isoniazid-resistant tuberculosis with a regimen of isoniazid, rifampin, pyrazinamide, and ethambutol daily for 6 months. OBJECTIVE: To conduct a review of clinical and bacteriological outcomes of treatment for patients who received the four-drug, 6-month regimen for isoniazid-resistant tuberculosis. DESIGN: A retrospective review of medical records of TB cases meeting the study criteria, a Mycobacterium tuberculosis isolate resistant to isoniazid, and intent to treat with a 6-month course of isoniazid, rifampin, pyrazinamide, and ethambutol. RESULTS: Through December 1999, 44 consecutive patients with isoniazid-resistant, rifampin-susceptible tuberculosis were started on the four-drug, 6-month daily regimen. Among 42 patients followed until completion of therapy, three required changes in the regimen due to side effects. There was one case of drug-induced hepatotoxicity. Among 39 patients with pulmonary involvement, 37 converted sputum cultures from positive to negative within 2 months of starting treatment. There were no treatment failures. On passive follow-up of at least 2 years on all patients, two patients relapsed. The single patient with bacteriological relapse did not develop further drug resistance. CONCLUSION: The regimen of isoniazid, rifampin, pyrazinamide, and ethambutol given daily for 6 months produced successful outcomes when used in a public health tuberculosis clinic as routine therapy for isoniazid-resistant tuberculosis.

Adolescent↗

[Clinical and laboratory studies in patients with pulmonary tuberculosis treated with pyrazinamide].

Different combinations of tuberculostatic drugs containing pyrazinamide were prescribed to 144 patients with pulmonary tuberculosis. In 3 months of treatment, bacterial excretion was observed in 89.7% of newly diagnosed patients and in 59% of cases with chronic forms of pulmonary tuberculosis. Side effects due to pyrazinamide were registered in 16.8% of the patients. In 2-3 months of therapy there were no differences traced in the condition of the liver, lipoid peroxidation or antioxidative activity as well as in a number of immunologic indices both in subjects receiving different combinations of antituberculous drugs, containing pyrazinamide, and in the control group of patients untreated with the drug.

Adult↗

Analysis of uric acid transport in renal tubules using benzbromarone and pyrazinamide.

Both the benzbromarone loading test alone and the pyrazinamide suppression test combined with the benzbromarone loading test were performed in four healthy male volunteers to examine the renal handling of uric acid and to demonstrate whether benzbromarone selectively blocks postsecretory reabsorption. On the basis of the four-component theory, equations of four states of fractional uric acid clearance were constructed: 1) the control state, the states of 2) benzbromarone loading, 3) pyrazinamide suppression and 4) both pyrazinamide suppression and benzbromarone loading. As a result, presecretory reabsorption, tubular secretion and postsecretory reabsorption of uric acid were calculated to be about 93-98%, 30-44% and 79-92%, respectively. In addition, it was calculated that benzbromarone inhibited postsecretory reabsorption selectively. Because of the selectivity of the action site of benzbromarone in renal tubules, this loading test is considered to reflect uric acid transport more precisely than tests using probenecid.

Benzbromarone↗

[Hepatotoxic effect of a combination of pyrazinamide with isoniazid and rifampicin].

Experiments on rats showed that 14-day exposure of the animals to pyrazinamide in a dose of 1.5 g/kg induced marked disorders in cholopoiesis and lowering of the reduced glutathion levels in the liver. When pyrazinamide was used in combination with isoniazid or rifampicin a marked increase in the activity of aspartate and alanine aminotransferases in blood serum and induction of lipid peroxidation in the liver were observed in addition to the disorders in cholopoiesis and lowering of the reduced glutathion levels. Combined use of pyraxinamide, isoniazid and rifampicin induced disorders in the liver state not differing significantly from those observed with using pyrazinamide in combination with isoniazid or rifampicin.

Animals↗