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Inflammatory Mediators of Platelet Activation: Focus on Atherosclerosis and COVID-19
Panagiotis Theofilis1, Marios Sagris1, Alexios S Antonopoulos1
1Department of Cardiology, "Hippokration" General Hospital of Athens, University of Athens Medical School, 11527 Athens, Greece.
Insights
Inflammation drives platelet activation in atherosclerosis, contributing to thrombotic complications. Anti-inflammatory therapies may reduce thrombosis by inhibiting platelet activation.
Area of Science:
- Cardiovascular Science
- Immunology
- Hematology
Background:
- Atherosclerotic cardiovascular diseases involve dysregulated inflammation and thrombosis.
- These conditions lead to significant morbidity and mortality.
Purpose of the Study:
- To review the impact of inflammation on platelet activation in atherosclerosis.
- To highlight novel interactions and therapeutic implications.
Main Methods:
- Review of existing scientific literature.
- Synthesis of evidence on inflammation-platelet interactions.
Main Results:
- Endothelial dysfunction, neutrophil mediators, and pro-inflammatory cytokines promote platelet activation.
- Novel pathways include toll-like receptors, myeloperoxidase, and platelet factor-4.
- Inflammation exacerbates thrombosis, particularly in COVID-19.
Conclusions:
- Inflammation critically drives platelet activation in atherosclerosis.
- Anti-inflammatory strategies show potential for anti-thrombotic effects.
Background:
Atherosclerotic cardiovascular diseases are characterized by a dysregulated inflammatory and thrombotic state, leading to devastating complications with increased morbidity and mortality rates.
Summary:
In this review article, we present the available evidence regarding the impact of inflammation on platelet activation in atherosclerosis. Key messages: In the context of a dysfunctional vascular endothelium, structural alterations by means of endothelial glycocalyx thinning or functional modifications through impaired NO bioavailability and increased levels of von Willebrand factor result in platelet activation. Moreover, neutrophil-derived mediators, as well as neutrophil extracellular traps formation, have been implicated in the process of platelet activation and platelet-leukocyte aggregation. The role of pro-inflammatory cytokines is also critical since their receptors are also situated in platelets while TNF-α has also been found to induce inflammatory, metabolic, and bone marrow changes. Additionally, important progress has been made towards novel concepts of the interaction between inflammation and platelet activation, such as the toll-like receptors, myeloperoxidase, and platelet factor-4. The accumulating evidence is especially important in the era of the coronavirus disease-19 pandemic, characterized by an excessive inflammatory burden leading to thrombotic complications, partially mediated by platelet activation. Lastly, recent advances in anti-inflammatory therapies point towards an anti-thrombotic effect secondary to diminished platelet activation.
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