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Published on: March 16, 2018
Suppression of LPS-induced inflammatory responses in macrophages infected with Leishmania
Nicholas J Lapara1, Ben L Kelly
1Department of Microbiology Immunology and Parasitology, LSU Health Sciences Center, 1901 Perdido Street, New Orleans, LA 70112, USA. bkell2@lsuhsc.edu.
Background:
Chronic inflammation activated by macrophage innate pathogen recognition receptors such as TLR4 can lead to a range of inflammatory diseases, including atherosclerosis, Crohn's disease, arthritis and cancer. Unlike many microbes, the kinetoplastid protozoan pathogen Leishmania has been shown to avoid and even actively suppress host inflammatory cytokine responses, such as LPS-induced IL-12 production. The nature and scope of Leishmania-mediated inflammatory cytokine suppression, however, is not well characterized. Advancing our knowledge of such microbe-mediated cytokine suppression may provide new avenues for therapeutic intervention in inflammatory disease.
Methods:
We explored the kinetics of a range of cytokine and chemokine responses in primary murine macrophages stimulated with LPS in the presence versus absence of two clinically distinct species of Leishmania using sensitive multiplex cytokine analyses. To confirm that these effects were parasite-specific, we compared the effects of Leishmania uptake on LPS-induced cytokine expression with uptake of inert latex beads.
Results:
Whilst Leishmania uptake alone did not induce significant levels of any cytokine analysed in this study, Leishmania uptake in the presence of LPS caused parasite-specific suppression of certain LPS-induced pro-inflammatory cytokines, including IL-12, IL-17 and IL-6. Interestingly, L. amazonensis was generally more suppressive than L. major. We also found that other LPS-induced proinflammatory cytokines, such as IL-1alpha, TNF-alpha and the chemokines MIP-1alpha and MCP-1 and also the anti-inflammatory cytokine IL-10, were augmented during Leishmania uptake, in a parasite-specific manner.
Conclusions:
During uptake by macrophages, Leishmania evades the activation of a broad range of cytokines and chemokines. Further, in the presence of a strong inflammatory stimulus, Leishmania suppresses certain proinflammatory cytokine responses in a parasite-specific manner, however it augments the production of other proinflammatory cytokines. Our findings highlight the complexity of inflammatory cytokine signalling regulation in the context of the macrophage and Leishmania interaction and confirm the utility of the Leishmania/macrophage infection model as an experimental system for further studies of inflammatory regulation. Such studies may advance the development of therapies against inflammatory disease.
Insights
Leishmania parasites suppress some inflammatory cytokines while augmenting others during macrophage uptake, revealing complex immune regulation. This discovery offers potential new therapies for inflammatory diseases.
Area of Science:
- Immunology
- Parasitology
- Molecular Biology
Background:
- Chronic inflammation, driven by macrophage receptors like TLR4, contributes to diseases such as atherosclerosis, Crohn's disease, arthritis, and cancer.
- The protozoan pathogen Leishmania uniquely suppresses host inflammatory responses, unlike many microbes, but the extent of this suppression is not fully understood.
Purpose of the Study:
- To investigate the impact of Leishmania infection on host inflammatory cytokine and chemokine responses in macrophages.
- To characterize the parasite-specific mechanisms of Leishmania-mediated immune suppression and augmentation.
Main Methods:
- Primary murine macrophages were stimulated with lipopolysaccharide (LPS) in the presence or absence of Leishmania species.
- Multiplex cytokine analyses were used to quantify a range of cytokine and chemokine responses.
- Uptake of inert latex beads was used as a control to confirm parasite-specific effects.
Main Results:
- Leishmania uptake alone did not induce significant cytokine production.
- Leishmania suppressed LPS-induced pro-inflammatory cytokines (IL-12, IL-17, IL-6) in a parasite-specific manner, with L. amazonensis showing greater suppression than L. major.
- Leishmania augmented other pro-inflammatory cytokines (IL-1alpha, TNF-alpha) and chemokines (MIP-1alpha, MCP-1), as well as the anti-inflammatory cytokine IL-10.
Conclusions:
- Leishmania actively modulates macrophage cytokine and chemokine profiles during infection.
- Leishmania exhibits a complex regulatory role, suppressing certain pro-inflammatory cytokines while enhancing others in response to inflammatory stimuli.
- The Leishmania-macrophage model provides valuable insights into inflammatory regulation, potentially leading to novel therapeutic strategies for inflammatory diseases.
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