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Implementation of a Permeable Membrane Insert-based Infection System to Study the Effects of Secreted Bacterial Toxins on Mammalian Host Cells
Published on: August 19, 2016
Inducible cyclooxygenase released prostaglandin E2 modulates the severity of infection caused by Streptococcus
Oliver Goldmann1, Erika Hertzén, Alexander Hecht
1Infection Immunology Research Group, Department of Microbial Pathogenesis, Helmholtz Centre for Infection Research, Braunschweig, Germany.
Abstract:
Streptococcus pyogenes is a significant human pathogen that can cause life-threatening invasive infections. Understanding the mechanism of disease is crucial to the development of more effective therapies. In this report, we explored the role of PGE(2), an arachidonic acid metabolite, and its rate-limiting enzyme cyclooxygenase 2 (COX-2) in the pathogenesis of severe S. pyogenes infections. We found that the COX-2 expression levels in tissue biopsies from S. pyogenes-infected patients, as well as in tissue of experimentally infected mice, strongly correlated with the severity of infection. This harmful effect was attributed to PGE(2)-mediated suppression of the bactericidial activity of macrophages through interaction with the G2-coupled E prostanoid receptor. The suppressive effect of PGE(2) was associated with enhanced intracellular cAMP production and was mimicked by the cAMP-elevating agent, forskolin. Activation of protein kinase A (PKA) was the downstream effector mechanisms of cAMP because treatment with PKI(14-22), a highly specific inhibitor of PKA, prevented the PGE(2)-mediated inhibition of S. pyogenes killing in macrophages. The inhibitory effect exerted by PKA in the generation of antimicrobial oxygen radical species seems to be the ultimate effector mechanism responsible for the PGE(2)-mediated downregulation of the macrophage bactericidal activity. Importantly, either genetic ablation of COX-2, pharmacological inhibition of COX-2 or treatment with the G2-coupled E prostanoid antagonist, AH6809, significantly improved the disease outcome in S. pyogenes infected mice. Therefore, the results of this study open up new perspectives on potential molecular pathways that are prone to pharmacological manipulation during severe streptococcal infections.
Insights
Cyclooxygenase 2 (COX-2) and its product prostaglandin E2 (PGE2) worsen severe Streptococcus pyogenes infections by suppressing macrophage immunity. Inhibiting COX-2 or blocking PGE2 signaling improves outcomes, offering new therapeutic targets.
Area of Science:
- Immunology
- Microbiology
- Pharmacology
Background:
- Streptococcus pyogenes causes severe invasive infections.
- Understanding pathogenesis is key to developing new therapies.
- Prostaglandin E2 (PGE2), produced by cyclooxygenase 2 (COX-2), is implicated in inflammation.
Purpose of the Study:
- To investigate the role of COX-2 and PGE2 in severe S. pyogenes infection pathogenesis.
- To elucidate the molecular mechanisms by which PGE2 affects macrophage function.
- To evaluate therapeutic strategies targeting the COX-2/PGE2 pathway.
Main Methods:
- Analysis of COX-2 expression in patient and mouse infection tissues.
- In vitro studies on macrophage bactericidal activity, cAMP levels, and protein kinase A (PKA) activation.
- In vivo studies using COX-2 knockout mice, pharmacological inhibitors, and a PGE2 receptor antagonist (AH6809).
Main Results:
- COX-2 expression correlated with S. pyogenes infection severity.
- PGE2 suppressed macrophage bactericidal activity via increased cAMP and PKA activation, inhibiting oxygen radical generation.
- Genetic or pharmacological inhibition of COX-2, or blocking PGE2 receptors, significantly improved disease outcomes in mice.
Conclusions:
- The COX-2/PGE2 pathway plays a critical role in S. pyogenes pathogenesis by impairing macrophage defense.
- PGE2-induced suppression of macrophage bactericidal activity is mediated by the cAMP-PKA signaling cascade.
- Targeting the COX-2/PGE2 pathway presents a promising therapeutic strategy for severe streptococcal infections.
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