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Mycobacterial antigens exacerbate disease manifestations in Mycobacterium tuberculosis-infected mice
Andre L Moreira1, Liana Tsenova, Melles Haile Aman
1Department of Pathology, New York University School of Medicine, New York, NY, USA.
Abstract:
To control tuberculosis worldwide, the burden of adult pulmonary disease must be reduced. Although widely used, Mycobacterium bovis BCG vaccination given at birth does not protect against adult pulmonary disease. Therefore, postexposure vaccination of adults with mycobacterial antigens is being considered. We examined the effect of various mycobacterial antigens on mice with prior M. tuberculosis infection. Subcutaneous administration of live or heat-treated BCG with or without lipid adjuvants to infected mice induced increased antigen-specific T-cell proliferation but did not reduce the bacterial load in the lungs and caused larger lung granulomas. Similarly, additional mycobacterial antigen delivered directly to the lungs by aerosol infection with viable M. tuberculosis mixed with heat-killed Mycobacterium tuberculosis (1:1) also did not reduce the bacillary load but caused increased expression of tumor necrosis factor alpha (TNF-alpha) and interleukin 6 (IL-6), which was associated with larger granulomas in the lungs. When M. tuberculosis-infected mice were treated with recombinant BCG that secreted cytokines shown to reduce disease in a preinfection vaccine model, the BCG secreting TNF-alpha, and to a lesser extent, IL-2 and gamma interferon (IFN-gamma), caused a significant increase in granuloma size in the lungs. Moreover, treatment of M. tuberculosis-infected mice with recombinant murine TNF-alpha resulted in increased inflammation in the lungs and accelerated mortality without affecting the bacillary load. Taken together, these studies suggest that administration of mycobacterial antigens to mice with prior M. tuberculosis infection leads to immune activation that may exacerbate lung pathology via TNF-alpha-induced inflammation without reducing the bacillary load.
Insights
Postexposure vaccination with mycobacterial antigens in mice with tuberculosis did not reduce bacterial load but worsened lung pathology. Immune activation, particularly via tumor necrosis factor alpha (TNF-alpha), exacerbated inflammation and mortality.
Area of Science:
- Immunology
- Infectious Diseases
- Tuberculosis Research
Background:
- Global tuberculosis control requires reducing adult pulmonary disease burden.
- Mycobacterium bovis BCG vaccination at birth offers limited protection against adult pulmonary tuberculosis.
- Postexposure vaccination strategies are being explored for adult tuberculosis.
Purpose of the Study:
- To investigate the effects of various mycobacterial antigens on mice previously infected with Mycobacterium tuberculosis.
- To assess the impact of antigen administration on bacterial load, immune response, and lung pathology.
Main Methods:
- Mice with prior M. tuberculosis infection were administered subcutaneous live or heat-treated BCG with or without lipid adjuvants.
- Aerosol delivery of M. tuberculosis mixed with heat-killed M. tuberculosis was used to introduce antigens directly into the lungs.
- Recombinant BCG secreting cytokines (TNF-alpha, IL-2, IFN-gamma) and recombinant murine TNF-alpha were administered to infected mice.
Main Results:
- Subcutaneous BCG administration increased T-cell proliferation but did not reduce lung bacterial load, leading to larger granulomas.
- Aerosolized mycobacterial antigens increased pro-inflammatory cytokines (TNF-alpha, IL-6) and granuloma size without reducing bacterial load.
- Recombinant BCG and TNF-alpha treatment exacerbated lung inflammation, increased granuloma size, and accelerated mortality, without affecting bacterial burden.
Conclusions:
- Administration of mycobacterial antigens to M. tuberculosis-infected mice activates the immune system.
- This immune activation, particularly through TNF-alpha, can worsen lung pathology and inflammation.
- Current postexposure antigen strategies may exacerbate disease rather than reduce bacillary load in established tuberculosis.