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In vivo Imaging Method to Distinguish Acute and Chronic Inflammation
Published on: August 16, 2013
Prostaglandin-cytokine crosstalk in chronic inflammation
1Centre for Inflammation Research, Queen's Medical Research Institute, The University of Edinburgh, Edinburgh, UK.
Abstract:
Chronic inflammation underlies various debilitating disorders including autoimmune, neurodegenerative, vascular and metabolic diseases as well as cancer, where aberrant activation of the innate and acquired immune systems is frequently seen. Since non-steroidal anti-inflammatory drugs exert their effects by inhibiting COX and suppressing PG biosynthesis, PGs have been traditionally thought to function mostly as mediators of acute inflammation. However, an inducible COX isoform, COX-2, is often highly expressed in tissues of the chronic disorders, suggesting an as yet unidentified role of PGs in chronic inflammation. Recent studies have shown that in addition to their short-lived actions in acute inflammation, PGs crosstalk with cytokines and amplify the cytokine actions on various types of inflammatory cells and drive pathogenic conversion of these cells by critically regulating their gene expression. One mode of such PG-mediated amplification is to induce the expression of relevant cytokine receptors, which is typically observed in Th1 cell differentiation and Th17 cell expansion, events leading to chronic immune inflammation. Another mode of amplification is cooperation of PGs with cytokines at the transcription level. Typically, PGs and cytokines synergistically activate NF-κB to induce the expression of inflammation-related genes, one being COX-2 itself, which makes PG-mediated positive feedback loops. This signalling consequently enhances the expression of various NF-κB-induced genes including chemokines to macrophages and neutrophils, which enables sustained infiltration of these cells and further amplifies chronic inflammation. In addition, PGs are also involved in tissue remodelling such as fibrosis and angiogenesis. In this article, we review these findings and discuss their relevance to human diseases.
Insights
Prostaglandins (PGs) amplify chronic inflammation by interacting with cytokines, driving gene expression in immune cells. This positive feedback loop, involving cyclooxygenase-2 (COX-2), contributes to diseases and tissue remodeling.
Area of Science:
- Immunology
- Molecular Biology
- Pathology
Background:
- Chronic inflammation is implicated in numerous diseases, including autoimmune, neurodegenerative, metabolic disorders, and cancer.
- Non-steroidal anti-inflammatory drugs traditionally target acute inflammation mediators like prostaglandins (PGs) via cyclooxygenase (COX) inhibition.
- The inducible COX-2 isoform's expression in chronic conditions suggests a role for PGs beyond acute inflammation.
Purpose of the Study:
- To review the emerging role of prostaglandins (PGs) in chronic inflammation.
- To elucidate the mechanisms by which PGs amplify inflammatory responses.
- To discuss the relevance of these findings to human diseases.
Main Methods:
- Literature review of recent studies on prostaglandin signaling in inflammation.
- Analysis of the molecular mechanisms of PG-cytokine crosstalk.
- Examination of PG involvement in immune cell gene expression and differentiation.
Main Results:
- PGs, particularly via COX-2, actively contribute to chronic inflammation, not just acute phases.
- PGs amplify cytokine actions by inducing cytokine receptors and synergizing at the transcriptional level (e.g., NF-κB activation).
- PGs promote positive feedback loops, sustained immune cell infiltration, and tissue remodeling processes like fibrosis and angiogenesis.
Conclusions:
- Prostaglandins are critical mediators in chronic inflammatory diseases.
- Understanding PG-cytokine interactions offers potential therapeutic targets for chronic inflammatory conditions.
- PGs play a multifaceted role in disease pathogenesis, extending beyond their traditional role in acute inflammation.
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