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Therapy of tuberculosis in mice by DNA vaccination
D B Lowrie1, R E Tascon, V L Bonato
1Laboratory for Mycobacterial Research, National Institute for Medical Research, London, UK.
Abstract:
Mycobacterium tuberculosis continues to kill about 3 million people every year, more than any other single infectious agent. This is attributed primarily to an inadequate immune response towards infecting bacteria, which suffer growth inhibition rather than death and subsequently multiply catastrophically. Although the bacillus Calmette-Guerin (BCG) vaccine is widely used, it has major limitations as a preventative measure. In addition, effective treatment requires that patients take large doses of antibacterial drug combinations for at least 6 months after diagnosis, which is difficult to achieve in many parts of the world and is further restricted by the emergence of multidrug-resistant strains of M. tuberculosis. In these circumstances, immunotherapy to boost the efficiency of the immune system in infected patients could be a valuable adjunct to antibacterial chemotherapy. Here we show in mice that DNA vaccines, initially designed to prevent infection, can also have a pronounced therapeutic action. In heavily infected mice, DNA vaccinations can switch the immune response from one that is relatively inefficient and gives bacterial stasis to one that kills bacteria. Application of such immunotherapy in conjunction with conventional chemotherapeutic antibacterial drugs might result in faster or more certain cure of the disease in humans.
Insights
DNA vaccines can therapeutically combat tuberculosis by switching the immune response to kill Mycobacterium tuberculosis bacteria. This immunotherapy approach may enhance conventional chemotherapy for a more effective tuberculosis treatment.
Area of Science:
- Immunology
- Infectious Diseases
- Vaccinology
Background:
- Tuberculosis (TB) remains a leading infectious killer, with 3 million deaths annually.
- Current treatments involve lengthy drug regimens and face challenges from multidrug-resistant strains.
- The bacillus Calmette-Guerin (BCG) vaccine offers limited protection against TB.
Purpose of the Study:
- To investigate the therapeutic potential of DNA vaccines against active Mycobacterium tuberculosis infection.
- To determine if DNA vaccination can alter the immune response to promote bacterial clearance.
Main Methods:
- DNA vaccination was administered to mice with established, heavy Mycobacterium tuberculosis infections.
- Immune responses and bacterial load were assessed post-vaccination.
Main Results:
- DNA vaccination demonstrated a pronounced therapeutic effect in heavily infected mice.
- Vaccination shifted the immune response from bacteriostatic to bactericidal, leading to bacterial killing.
- This immune modulation was observed despite the vaccines initially being designed for prevention.
Conclusions:
- Therapeutic DNA vaccination can effectively combat Mycobacterium tuberculosis infection in a mouse model.
- This immunotherapy approach shows promise as an adjunct to conventional antibacterial chemotherapy for TB.
- Further research may lead to improved treatment strategies for human tuberculosis.
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