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Mycobacterium vaccae immunotherapy for treating tuberculosis.

BACKGROUND: Mycobacterium vaccae has been advocated for immunotherapy in the treatment of tuberculosis and other infections caused by mycobacteria. OBJECTIVES: The objective of this review was to assess the effects of Mycobacterium vaccae for treating tuberculosis. SEARCH STRATEGY: We searched the Cochrane Infectious Diseases Group trials register, the Cochrane Controlled Trials register, Medline, Embase and reference lists of articles. We also contacted organisations and individuals working in the field. SELECTION CRITERIA: Randomised and quasi-randomised trials of preparations of whole, killed Mycobacterium vaccae in patients with tuberculosis. DATA COLLECTION AND ANALYSIS: One reviewer assessed trial quality and extracted data. MAIN RESULTS: Four trials met the inclusion criteria. There was no effect on mortality (2 trials, RR 1.01, 95% CI 0.50 to 2.04); no consistent effect on sputum negativity or sputum culture; and a high level of adverse reactions. REVIEWER'S CONCLUSIONS: Immunotherapy with Mycobacterium vaccae does not appear to benefit patients with tuberculosis.

Humans↗

Immunotherapy of tuberculosis with Mycobacterium vaccae NCTC 11659.

The history of immunotherapy for tuberculosis is briefly reviewed, and the early appreciation of the importance of secreted antigens, common mycobacterial antigens and stress proteins is noted. The methods by which Mycobacterium vaccae strain NCTC 11659 was selected for special attention, and results of some of the pilot studies of its use as an immunotherapeutic for tuberculosis are reviewed. The results suggested that immunotherapy with M. vaccae may be an important step forward in the treatment and eventual control of tuberculosis. Used in combination with modern short course chemotherapy, treatment failures and deaths during treatment can be significantly reduced. Preliminary data suggests that shortened courses of chemotherapy may be possible when combined with immunotherapy, and such treatment may also be effective in patients co-infected with HIV. Studies at several centers show that M. vaccae may have an important part to play in the treatment of multi-drug resistant tuberculosis, especially when resistance is of the primary type. The mechanism by which M. vaccae achieves these results may be through adrenal endocrine influences on immunity, but remains speculative.

AIDS-Related Opportunistic Infections↗

Double-blind placebo-controlled trial of Mycobacterium vaccae immunotherapy for tuberculosis in KwaZulu, South Africa, 1991-97.

To investigate Mycobacterium vaccae immunotherapy in the treatment of human tuberculosis and to assess longer-term outcomes following treatment for tuberculosis patients, a double-blind placebo-controlled Phase-2 clinical trial was set up in the Mseleni and Manguzi health wards in north-eastern KwaZulu, South Africa. In 1991-93, 204 patients admitted with clinical tuberculosis to the 2 hospitals were allocated to receive single intradermal doses of 0.1 mL M. vaccae NCTC 11659 or 0.1 mL tetanus toxoid alongside standard 6-months chemotherapy with rifampicin, isoniazid, pyrazinamide and ethambutol. The main outcome measures were sputum bacteriology culture conversion to negativity, clinical assessment, weight gain, erythrocyte sedimentation rate and chest radiography. Patients were followed-up after 4 years to determine their health status. M. vaccae cases gained weight more quickly during the first 8 weeks compared with 'placebo' patients. Regression analysis found a synergistic relationship between BCG positive scar status and M. vaccae-induced weight gain. No further difference was found between treatment groups. The bacterial conversion rate to negativity at 2 months was much lower than expected (44.8% active, 38.8% placebo). Mortality was considerably higher than expected after treatment (7.1% each group) and after 4 years (25.8% active, 21.0% placebo; death from tuberculosis 14.5% and 16.1%, respectively). Immune sensitization to environmental mycobacteria may explain the geographical variability of M. vaccae efficacy, as occurs with BCG vaccination and occurred with Koch's tuberculins of the late 19th century. Multiple doses of M. vaccae may be more effective. Further work is required to link the ability of M. vaccae to modulate protective cytokine profiles to favourable outcome in clinical studies. The high mortality found in this study suggests urgent reviews of chemotherapy and monitoring of patients are necessary in KwaZulu.

Adult↗

Immunotherapy with fragmented Mycobacterium tuberculosis cells increases the effectiveness of chemotherapy against a chronical infection in a murine model of tuberculosis.

Reduction of colony forming units by rifampicin-isoniazid therapy given 9-17 weeks post-infection was made more pronounced by immunotherapy with a vaccine made of fragmented Mycobacterium tuberculosis cells detoxified and liposomed (RUTI), given on weeks 17, 19 and 21 post-infection, in the murine model of tuberculosis in C57BL/6 and DBA/2 inbred strains. RUTI triggered a Th1/Th2 response, as demonstrated by the production of IgG1, IgG2a and IgG3 antibodies against a wide range of peptides. The histological analysis did not show neither eosinophilia nor necrosis, and granulomatous infiltration was only slightly increased in C57BL/6 mice when RUTI was administered intranasally.

Animals↗

Immunotherapy with Mycobacterium vaccae in the treatment of tuberculosis.

All the trials of immunotherapy of tuberculosis with killed Mycobacterium vaccae, published or not, that are known to the authors are reviewed here. Following an introduction giving a brief account of some earlier immunotherapies for tuberculosis, the origins of the concept of immunotherapy with M.vaccae are considered. Progress is traced from the early work with irradiation-killed organisms in leprosy to the study in London of modulation of tuberculin skin-test responses, and the first comparative trials in The Gambia and Kuwait. In the last of these studies, dosages and different preparations were compared. As a result of this subsequent studies have used 109 heat-killed organisms, equivalent to 1mg wet-weight of bacilli, as a standard dose. A series of small trials in Argentina, India, Nigeria, Romania, South Africa and Vietnam have pioneered the way forward, disclosing geographic variability, with South Africa as the only country where almost no effects were recorded. Together the studies have shown that a single dose may not be sufficient. These studies have confirmed the mode of action of M.vaccae to be regulation of cell-mediated immunity with enhancement of Th1 and down-regulation of Th2, and they have shown benefits in faster bacteriological conversion, reduction in ESR, recovery of body weight and resolution of radiological opacities, leading to better recovery from the disease even when given to patients receiving directly observed therapy, short-course (DOTS). Three major randomised, placebo-controlled and partly blinded trials have been carried out in Africa. The first, in South Africa showed no M.vaccae-related effects. The second trial, in Uganda, confirmed the observations made in the earlier studies of faster sputum conversion and better radiological clearance. The third trial, in Zambia and Malawi, showed a trend towards benefits in the treatment of HIV seronegative patients but failed to show beneficial effects in HIV seropositive patients. Studies in patients with multi-drug-resistant tuberculosis have shown that multiple doses of immunotherapy are required in most cases, and that these markedly improve cure-rates for these patients. This is especially so when they are also treated with chemotherapy tailored to the resistance pattern of their infecting organisms. A small study has just commenced in which repeated doses of M.vaccae are being administered to a group of patients who have failed treatment with DOTS-Plus (directly observed therapy with drugs selected on the basis of drug susceptibility profiles). Late in the investigation came publications from China supporting and confirming the data in both drug-sensitive and drug-resistant disease, by the use of multiple injections of their own different preparation of M.vaccae. The trial that is now beginning in Vietnam of 3 doses of M.vaccae in the treatment of newly diagnosed pulmonary tuberculosis, is accompanied by a chemotherapeutic regimen with a shortened continuation phase. If this important study is successful, immunotherapy with killed M.vaccae should be introduced into the treatment regimens for tuberculosis worldwide.

Animals↗

Immunological consequences of three doses of heat-killed Mycobacterium vaccae in the immunotherapy of tuberculosis.

We report the first study of triple-dose immunotherapy with heat-killed Mycobacterium vaccae (SRL 172) combined with short-course, directly observed chemotherapy in newly diagnosed pulmonary tuberculosis patients. The study was carried out in Rosario, Argentina, where single-dose immunotherapy with M. vaccae has previously been shown effective. Twenty-two HIV seronegative patients, sputum-positive for tubercle bacilli, entered a randomised and partly blinded trial. Twelve patients received injections of SRL 172 and 10 patients received placebo on days 1, 30 and 60 of chemotherapy. All patients were followed up clinically, by sputum bacteriology, chest radiography and haematology. Patients receiving SRL 172 showed faster and more complete clinical improvement, accelerated disappearance of bacilli from sputum, better radiological clearance and a more rapid fall in ESR, than did those receiving placebo. Follow-up continued for a year after therapy and no patient failed treatment or relapsed. Special investigations included longitudinal assessments of respiratory bursts and expression of CD11b on separated polymorphonuclear and mononuclear leukocytes. Tumour necrosis factor alpha (TNF-alpha) was measured in the supernates of cultured cells and both TNF-alpha and interleukin-4 (IL-4) were measured in serum samples. Immunotherapy recipients showed a significantly faster return towards normal values in all the immunological parameters, than did placebo recipients. The results are consistent with a regulatory activity on cellular immunity, reducing the influence of Th2 and enhancing Th1 to the benefit of the patients. This could allow a reduced period of chemotherapy without loss of efficacy and help to prevent the development of multi-drug resistance.

Adult↗

Protection against Mycobacterium tuberculosis infection by adoptive immunotherapy. Requirement for T cell-deficient recipients.

The results of this study demonstrate that spleen cells taken from mice at the height of the primary immune response to intravenous infection with Mycobacterium tuberculosis possess the capacity to transfer adoptive protection to M. tuberculosis-infected recipients, but only if these recipients are first rendered T cell-deficient, either by thymectomy and gamma irradiation, or by sublethal irradiation. A similar requirement was necessary to demonstrate the adoptive protection of the lungs after exposure to an acute aerosol-delivered M. tuberculosis infection. In both infectious models successful adoptive immunotherapy was shown to be mediated by T lymphocytes, which were acquired in the donor animals in response to the immunizing infection. It is proposed that the results of this study may serve as a basic model for the subsequent analysis of the nature of the T cell-mediated immune response to both systemic and aerogenic infections with M. tuberculosis.

Animals↗

Immunotherapy with Mycobacterium vaccae in patients with newly diagnosed pulmonary tuberculosis: a randomised controlled trial. Durban Immunotherapy Trial Group.

BACKGROUND: Mycobacterium vaccae, an environmental saprophyte, has immunogenic properties that enhance the host immune response. Immunotherapy with M. vaccae has been suggested to shorten short-course antituberculosis chemotherapy. We tested the hypothesis that the addition of M. vaccae to standard short-course antituberculosis chemotherapy would decrease the time to achieve a negative sputum culture. METHODS: Patients with newly diagnosed tuberculosis were randomly assigned an injection of saline (placebo) or M. vaccae on day 8. All patients received antituberculosis chemotherapy with rifampicin, isoniazid, pyrazinamide, and ethambutol. Sputum samples were checked by microscopy and culture every week for the first 8 weeks and monthly until the end of chemotherapy at 6 months. The primary outcome was the time to a negative sputum culture in the first 8 weeks. Intention-to-treat analysis was used and time to sputum clearance was assessed by log-rank test and Cox's proportional-hazards regression. FINDINGS: 172 patients received M. vaccae and 175 patients received placebo. At 8 weeks, 70 patients in the M. vaccae group and 65 patients in the placebo group had a negative culture; there was no difference between groups in the time to a negative culture (p=0.83). There was no interaction between HIV status and treatment. INTERPRETATION: M. vaccae immunotherapy has no benefit when added to standard antituberculosis chemotherapy.

AIDS-Related Opportunistic Infections↗

Improved immunotherapy for pulmonary tuberculosis with Mycobacterium vaccae.

We previously demonstrated that a single intradermal injection of 10(9) irradiation-killed M. vaccae, given 1 month after starting chemotherapy, caused significant changes in responses to mycobacterial antigens. Amongst 38 patients with pulmonary tuberculosis, 29% had lymphocytes responding to common myocobacterial antigens after the injection, compared with only 11% of 49 similar patients after an injection of saline (p less than 0.03). To increase the proportion of responders to these antigens, six modifications of the potentially immunotherapeutic injection, randomized with injections of saline, have been assessed by biochemical, clinical, haematological, immunological and radiological criteria. Subsequent lymphocyte proliferation to mycobacterial antigens enabled the modifications to be ranked in order of efficacy. Tuberculin plus murabutide plus 10(9) irradiated M. vaccae (36% of 25), an autoclaved preparation of 10(9) M. vaccae (45% of 22), and 2 x 10(9) irradiated M. vaccae (75% of 12) were the most effective. Antibody responses in several IgG subclasses to mycobacteria, but not streptococci, were also significantly increased by the most effective modifications over the 8 weeks following injection. Detailed radiological study showed that use of the autoclaved bacilli was followed by a delay in clearing of consolidation, but by better closing of cavities than was found in the control group, suggesting enhanced, or altered, immunological activity around the lesions.

Acetylmuramyl-Alanyl-Isoglutamine↗

Clinical and serological studies of tuberculosis patients in Argentina receiving immunotherapy with Mycobacterium vaccae (SRL 172).

Two small, placebo-controlled studies of immunotherapy with heat killed Mycobacterium vaccae added to routine chemotherapy for pulmonary tuberculosis, together involving 40 HIV seronegative patients, were carried out in Argentina. The immunotherapy was associated with reduced sputum smear positivity of AFB at 1 month and a greater reduction in ESR at 2 months. In the first study radiological improvement was better (P < 0.05) among immunotherapy recipients. In the second study, weight regain and time to become apyrexial were measured and were found to be improved amongst immunotherapy recipients (P < 0.05). In the first month of treatment the levels of IgG to the 65 kDa and 70 kDa heat-shock proteins showed greater falls following immunotherapy (P < 0.05 and P < 0.001, respectively). On admission serum cytokine levels of interleukins 4 and 10 (IL-4, IL-10), interferon gamma (IFN-gamma) and tumour necrosis factor alpha (TNF-alpha) were grossly raised in comparison with a matched control group (P < 0.001). After 1 month. Levels of IL-4, IL-10 and TNF-alpha fell (P < 0.001, P < 0.01 and P < 0.01, respectively) and levels of IFN-gamma rose more (P = 0.005) in immunotherapy recipients than in those receiving chemotherapy alone. The results are in accord with a switch towards a TH1 immunological status and clinical benefit for immunotherapy recipients.

Adjuvants, Immunologic↗