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Role of neutrophils in tuberculosis: A bird's eye view
J Nancy Hilda1, Sulochana Das2, Srikanth P Tripathy1
1Department of HIV/AIDS, National Institute for Research in Tuberculosis, Chetpet, Chennai, India.
Abstract:
Neutrophils are innate immune cells implicated in the process of killing Mycobacterium tuberculosis early during infection. Once the mycobacteria enter the human system, neutrophils sense and engulf them. By secreting bactericidal enzymes and α-defensins like human neutrophil peptides loaded in their granule armory, neutrophils kill the pathogen. Peripheral blood neutrophils secrete a wide range of cytokines like IL-8, IL-1-β and IFN-γ in response to mycobacterial infection. Thus they signal and activate distant immune cells thereby informing them of prevailing infection. The activated monocytes, dendritic cells and T cells further continue the immune response. As a final call, neutrophils release neutrophil extracellular traps in circulation which can trap mycobacteria in patients with active pulmonary tuberculosis. Extensive neutrophilic response is associated with inflammation, pulmonary destruction, and pathology. For example, inappropriate phagocytosis of mycobacteria-infected neutrophils can damage host cells due to necrosis of neutrophils, leading to chronic inflammation and tissue damage. This dual nature of neutrophils makes them double-edged swords during tuberculosis, and hence data available on neutrophil functions against mycobacterium are controversial and non-uniform. This article reviews the role of neutrophils in tuberculosis infection and highlights research gaps that need to be addressed. We focus on our understanding of new research ideologies targeting neutrophils (a) in the early stages of infection for boosting specific immune functions or (b) in the later stages of infection to prevent inflammatory conditions mediated by activated neutrophils. This would plausibly lead to the development of better tuberculosis vaccines and therapeutics in the future.
Insights
Neutrophils play a dual role in tuberculosis, both killing Mycobacterium tuberculosis early and causing inflammation later. Targeting neutrophils could lead to better vaccines and treatments for this infection.
Area of Science:
- Immunology
- Infectious Diseases
- Cell Biology
Background:
- Neutrophils are key innate immune cells that combat Mycobacterium tuberculosis (Mtb) infection.
- They engulf and kill Mtb using enzymes and antimicrobial peptides, and signal other immune cells.
- Neutrophil extracellular traps (NETs) can trap Mtb in active pulmonary tuberculosis.
Purpose of the Study:
- To review the multifaceted role of neutrophils in tuberculosis (TB) infection.
- To identify research gaps concerning neutrophil functions in TB.
- To explore novel strategies targeting neutrophils for improved TB vaccines and therapeutics.
Main Methods:
- Literature review of existing research on neutrophils in tuberculosis.
- Analysis of neutrophil functions in early and late stages of infection.
- Discussion of potential therapeutic targets within neutrophil-mediated responses.
Main Results:
- Neutrophils exhibit a dual role: early pathogen killing and later inflammatory pathology.
- Extensive neutrophilic response is linked to lung damage and chronic inflammation.
- Current data on neutrophil functions in TB are controversial and inconsistent.
Conclusions:
- Neutrophils are critical but complex players in tuberculosis pathogenesis.
- Targeting neutrophils in early infection may enhance immunity, while targeting them in later stages may reduce inflammation.
- Further research is needed to harness neutrophil functions for effective TB control and treatment.
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