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Published on: September 18, 2020
Human macrophage polarization shapes B. pertussis intracellular persistence
Hugo A Valdez1,2, Jose L Marin Franco3, Juan P Gorgojo2
1Department of Life Sciences and Chemistry, Jacobs University, Bremen, Germany.
Abstract:
We previously demonstrated that Bordetella pertussis, the etiologic agent of whooping cough, is able to survive inside human macrophages. The aim of this study was to examine the influence of macrophage polarization in the development of B. pertussis intracellular infections. To this end, primary human monocytes were differentiated into M1, M2a, or M2c macrophages and further infected with B. pertussis. Infected M1 macrophages showed a proinflammatory response evidenced by the production of TNF-α, IL-12p70, and IL-6. Conversely, infection of M2a and M2c macrophages did not induce TNF-α, IL-12p70, nor IL-6 at any time postinfection but showed a significant increase of M2 markers, such as CD206, CD163, and CD209. Interestingly, anti-inflammatory cytokines, like IL-10 and TGF-β, were induced after infection in the 3 macrophage phenotypes. B. pertussis phagocytosis by M1 macrophages was lower than by M2 phenotypes, which may be ascribed to differences in the expression level of B. pertussis docking molecules on the surface of the different phenotypes. Intracellular bactericidal activity was found to be significantly higher in M1 than in M2a or M2c cells, but live bacteria were still detected within the 3 phenotypes at the late time points after infection. In summary, this study shows that intracellular B. pertussis is able to survive regardless of the macrophage activation program, but its intracellular survival proved higher in M2 compared with the M1 macrophages, being M2c the best candidate to develop into a niche of persistence for B. pertussis.
Insights
Bordetella pertussis survives within human macrophages, with higher persistence in M2 types (M2a, M2c) compared to M1. M2c macrophages appear to be the most suitable niche for B. pertussis persistence.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Bordetella pertussis, the cause of whooping cough, can survive inside human macrophages.
- Macrophage polarization influences immune responses and pathogen interactions.
Purpose of the Study:
- To investigate how macrophage polarization (M1, M2a, M2c) affects Bordetella pertussis intracellular survival and host response.
Main Methods:
- Human monocytes were differentiated into M1, M2a, or M2c macrophages.
- Macrophages were infected with B. pertussis.
- Pro-inflammatory (TNF-α, IL-12p70, IL-6) and anti-inflammatory (IL-10, TGF-β) cytokines were measured.
- M2 markers (CD206, CD163, CD209) were assessed.
- Phagocytosis rates and intracellular bactericidal activity were determined.
Main Results:
- M1 macrophages exhibited a pro-inflammatory response and higher bactericidal activity against B. pertussis.
- M2a and M2c macrophages showed increased M2 markers and enhanced B. pertussis survival, with M2c being the most permissive.
- All macrophage types induced anti-inflammatory cytokines (IL-10, TGF-β) post-infection.
- B. pertussis phagocytosis was lower in M1 compared to M2 macrophages.
Conclusions:
- B. pertussis can persist intracellularly in all human macrophage phenotypes.
- M2 macrophages, particularly M2c, provide a more favorable environment for B. pertussis survival compared to M1 macrophages.
- Macrophage polarization significantly impacts B. pertussis intracellular fate and host immune response.
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