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An In vitro Model to Study Immune Responses of Human Peripheral Blood Mononuclear Cells to Human Respiratory Syncytial Virus Infection
Published on: December 10, 2013
Reduced interleukin-18 secretion by human monocytic cells in response to infections with hyper-virulent Streptococcus
Lea A Tölken1, Antje D Paulikat1, Lana H Jachmann1
1Department of Molecular Genetics and Infection Biology, University of Greifswald, Greifswald, Germany.
Background:
Streptococcus pyogenes (group A streptococcus, GAS) causes a variety of diseases ranging from mild superficial infections of the throat and skin to severe invasive infections, such as necrotizing soft tissue infections (NSTIs). Tissue passage of GAS often results in mutations within the genes encoding for control of virulence (Cov)R/S two component system leading to a hyper-virulent phenotype. Dendritic cells (DCs) are innate immune sentinels specialized in antigen uptake and subsequent T cell priming. This study aimed to analyze cytokine release by DCs and other cells of monocytic origin in response to wild-type and natural covR/S mutant infections.
Methods:
Human primary monocyte-derived (mo)DCs were used. DC maturation and release of pro-inflammatory cytokines in response to infections with wild-type and covR/S mutants were assessed via flow cytometry. Global proteome changes were assessed via mass spectrometry. As a proof-of-principle, cytokine release by human primary monocytes and macrophages was determined.
Results:
In vitro infections of moDCs and other monocytic cells with natural GAS covR/S mutants resulted in reduced secretion of IL-8 and IL-18 as compared to wild-type infections. In contrast, moDC maturation remained unaffected. Inhibition of caspase-8 restored secretion of both molecules. Knock-out of streptolysin O in GAS strain with unaffected CovR/S even further elevated the IL-18 secretion by moDCs. Of 67 fully sequenced NSTI GAS isolates, 28 harbored mutations resulting in dysfunctional CovR/S. However, analyses of plasma IL-8 and IL-18 levels did not correlate with presence or absence of such mutations.
Conclusions:
Our data demonstrate that strains, which harbor covR/S mutations, interfere with IL-18 and IL-8 responses in monocytic cells by utilizing the caspase-8 axis. Future experiments aim to identify the underlying mechanism and consequences for NSTI patients.
Insights
Mutations in Streptococcus pyogenes covR/S genes reduce IL-8 and IL-18 release from immune cells. This interference with host response may contribute to severe necrotizing soft tissue infections (NSTIs).
Area of Science:
- Immunology
- Microbiology
- Infectious Diseases
Background:
- Streptococcus pyogenes (GAS) causes diverse infections, from mild to severe necrotizing soft tissue infections (NSTIs).
- GAS virulence can increase due to mutations in the CovR/S two-component system, leading to hyper-virulence.
- Dendritic cells (DCs) are key immune cells for initiating T cell responses.
Purpose of the Study:
- To investigate how wild-type and covR/S mutant GAS strains affect cytokine release from dendritic cells (DCs) and other monocytic cells.
- To analyze the impact of GAS covR/S mutations on innate immune responses.
Main Methods:
- Human primary monocyte-derived dendritic cells (moDCs) were infected with wild-type and covR/S mutant GAS strains.
- Cytokine release and DC maturation were assessed using flow cytometry.
- Global proteome changes were analyzed via mass spectrometry; cytokine release from monocytes and macrophages was also tested.
Main Results:
- GAS covR/S mutants induced lower secretion of IL-8 and IL-18 from moDCs and other monocytic cells compared to wild-type strains.
- DC maturation was not affected by the mutations; caspase-8 inhibition restored IL-8 and IL-18 secretion.
- While 28 of 67 NSTI GAS isolates had dysfunctional CovR/S, plasma IL-8 and IL-18 levels did not correlate with these mutations.
Conclusions:
- GAS strains with covR/S mutations impair IL-18 and IL-8 responses in monocytic cells via the caspase-8 pathway.
- These findings suggest a mechanism by which GAS evades immune detection, potentially contributing to NSTI severity.
- Further research is needed to elucidate the precise mechanisms and clinical implications for NSTI patients.
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