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Chlamydia pneumoniae hides inside apoptotic neutrophils to silently infect and propagate in macrophages
Jan Rupp1, Lisa Pfleiderer, Christiane Jugert
1Institute of Medical Microbiology and Hygiene, University of Luebeck, Luebeck, Germany. jan.rupp@uk-sh.de
Background:
Intracellular pathogens have developed elaborate strategies for silent infection of preferred host cells. Chlamydia pneumoniae is a common pathogen in acute infections of the respiratory tract (e.g. pneumonia) and associated with chronic lung sequelae in adults and children. Within the lung, alveolar macrophages and polymorph nuclear neutrophils (PMN) are the first line of defense against bacteria, but also preferred host phagocytes of chlamydiae.
Methodology/Principal Findings:
We could show that C. pneumoniae easily infect and hide inside neutrophil granulocytes until these cells become apoptotic and are subsequently taken up by macrophages. C. pneumoniae infection of macrophages via apoptotic PMN results in enhanced replicative activity of chlamydiae when compared to direct infection of macrophages, which results in persistence of the pathogen. Inhibition of the apoptotic recognition of C. pneumoniae infected PMN using PS- masking Annexin A5 significantly lowered the transmission of chlamydial infection to macrophages. Transfer of apoptotic C. pneumoniae infected PMN to macrophages resulted in an increased TGF-ss production, whereas direct infection of macrophages with chlamydiae was characterized by an enhanced TNF-alpha response.
Conclusions/Significance:
Taken together, our data suggest that C. pneumoniae uses neutrophil granulocytes to be silently taken up by long-lived macrophages, which allows for efficient propagation and immune protection within the human host.
Insights
Chlamydia pneumoniae infects neutrophils, which then transfer the bacteria to macrophages upon apoptosis. This neutrophil-mediated pathway enhances bacterial replication and immune evasion within host cells.
Area of Science:
- Microbiology
- Immunology
- Cell Biology
Background:
- Chlamydia pneumoniae is a common respiratory pathogen.
- It infects host cells, including alveolar macrophages and neutrophils.
- The pathogen employs strategies for silent intracellular infection.
Purpose of the Study:
- To investigate the role of neutrophils in Chlamydia pneumoniae infection.
- To understand the transmission dynamics between neutrophils and macrophages.
- To explore the impact on host immune responses.
Main Methods:
- Infection of neutrophils and macrophages with C. pneumoniae.
- Analysis of bacterial replication and intracellular survival.
- Assessment of host cell apoptosis and phagocytosis.
- Measurement of cytokine production (TGF-β and TNF-α).
Main Results:
- C. pneumoniae infects neutrophils and is transferred to macrophages via apoptotic neutrophils.
- Infection via apoptotic neutrophils enhances C. pneumoniae replication compared to direct macrophage infection.
- Inhibition of neutrophil apoptosis recognition reduces infection transmission.
- Apoptotic neutrophil transfer increases TGF-β production, while direct infection increases TNF-α.
Conclusions:
- Chlamydia pneumoniae utilizes neutrophils as a vehicle for silent uptake by macrophages.
- This mechanism facilitates efficient pathogen propagation and immune evasion.
- The study highlights a novel pathway for intracellular pathogen persistence.
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