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Membrane TNF confers protection to acute mycobacterial infection
Cecile Fremond1, Nasiema Allie, Ivy Dambuza
1Molecular Immunology and Embryology, Centre National de la Recherche Scientifique, Orléans, France. fremond@cnrs-orleans.fr
Background:
Tumour necrosis factor (TNF) is crucial for the control of mycobacterial infection as TNF deficient (KO) die rapidly of uncontrolled infection with necrotic pneumonia. Here we investigated the role of membrane TNF for host resistance in knock-in mice with a non-cleavable and regulated allele (mem-TNF).
Methods:
C57BL/6, TNF KO and mem-TNF mice were infected with M. tuberculosis H37Rv (Mtb at 100 CFU by intranasal administration) and the survival, bacterial load, lung pathology and immunological parameters were investigated. Bone marrow and lymphocytes transfers were used to test the role of membrane TNF to confer resistance to TNF KO mice.
Results:
While TNF-KO mice succumbed to infection within 4-5 weeks, mem-TNF mice recruited normally T cells and macrophages, developed mature granuloma in the lung and controlled acute Mtb infection. However, during the chronic phase of infection mem-TNF mice succumbed to disseminated infection with necrotic pneumonia at about 150 days. Reconstitution of irradiated TNF-KO mice with mem-TNF derived bone marrow cells, but not with lymphocytes, conferred host resistance to Mtb infection in TNF-KO mice.
Conclusion:
Membrane expressed TNF is sufficient to allow cell-cell signalling and control of acute Mtb infection. Bone marrow cells, but not lymphocytes from mem-TNF mice confer resistance to infection in TNF-KO mice. Long-term infection control with chronic inflammation likely disrupting TNF mediated cell-cell signalling, additionally requires soluble TNF.
Insights
Membrane-bound tumor necrosis factor (TNF) controls acute mycobacterial infection, but soluble TNF is essential for long-term resistance and preventing chronic inflammation.
Area of Science:
- Immunology
- Infectious Diseases
- Microbiology
Background:
- Tumor necrosis factor (TNF) is vital for controlling mycobacterial infections.
- TNF-deficient mice succumb rapidly to uncontrolled infection and pneumonia.
- The role of membrane-bound TNF in host resistance was investigated.
Purpose of the Study:
- To investigate the role of membrane-bound TNF in host resistance to Mycobacterium tuberculosis (Mtb) infection.
- To compare the efficacy of membrane TNF versus soluble TNF in controlling Mtb infection.
Main Methods:
- Mice models including TNF knockout (KO) and membrane TNF (mem-TNF) knock-in were infected with Mtb.
- Survival, bacterial load, lung pathology, and immunological parameters were assessed.
- Bone marrow and lymphocyte transfers were performed to evaluate resistance mechanisms.
Main Results:
- Mem-TNF mice controlled acute Mtb infection, recruiting immune cells and forming granulomas.
- However, mem-TNF mice eventually succumbed to disseminated infection and pneumonia during chronic stages.
- Bone marrow cells from mem-TNF mice, but not lymphocytes, conferred resistance to Mtb in TNF-KO mice.
Conclusions:
- Membrane-bound TNF is sufficient for controlling acute Mtb infection through cell-cell signaling.
- Long-term control of chronic Mtb infection and inflammation requires soluble TNF.
- Bone marrow-derived cells mediate resistance conferred by membrane TNF.
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