Platelets in Kawasaki disease: mediators of vascular inflammation
Magali Noval Rivas1,2, Begüm Kocatürk3, Bernardo S Franklin4
1Department of Pediatrics, Division of Pediatric Infectious Diseases, Guerin Children's, Cedars Sinai Medical Center, Los Angeles, CA, USA.
Insights
Platelets play a key role in Kawasaki disease, a childhood vasculitis. Understanding platelet activation and their interactions with immune cells is crucial for developing new treatments for this heart condition.
Area of Science:
- Cardiovascular Research
- Immunology
- Pediatric Disease
Background:
- Kawasaki disease is a leading cause of acquired pediatric heart disease, characterized by systemic vasculitis.
- Increased platelet activation and counts are hallmarks of Kawasaki disease, linked to treatment resistance and coronary artery aneurysms.
Purpose of the Study:
- To review the multifaceted role of platelets in Kawasaki disease pathogenesis.
- To explore platelet interactions with immune cells in amplifying inflammation and vascular remodeling.
- To discuss potential platelet-targeted therapeutic strategies.
Main Methods:
- Review of existing literature on platelet function in Kawasaki disease.
- Analysis of platelet releasates (granules, microRNAs) and their immune-modulatory effects.
- Examination of leukocyte-platelet aggregate formation and its clinical significance.
Main Results:
- Platelets actively contribute to inflammation and vascular remodeling in Kawasaki disease.
- Platelet activation boosts NLRP3 inflammasome activation and IL-1β production.
- Leukocyte-platelet aggregates are elevated in acute Kawasaki disease, serving as severity biomarkers.
Conclusions:
- Platelets are key immune effectors amplifying inflammation in Kawasaki disease vasculitis.
- Targeting platelets or their derived molecules offers promising therapeutic avenues.
- Further research into platelet-immune cell crosstalk is vital for managing Kawasaki disease.
Abstract:
Kawasaki disease, a systemic vasculitis that affects young children and can result in coronary artery aneurysms, is the leading cause of acquired heart disease among children. A hallmark of Kawasaki disease is increased blood platelet counts and platelet activation, which is associated with an increased risk of developing resistance to intravenous immunoglobulin and coronary artery aneurysms. Platelets and their releasate, including granules, microparticles, microRNAs and transcription factors, can influence innate immunity, enhance inflammation and contribute to vascular remodelling. Growing evidence indicates that platelets also interact with immune and non-immune cells to regulate inflammation. Platelets boost NLRP3 inflammasome activation and IL-1β production by human immune cells by releasing soluble mediators. Activated platelets form aggregates with leukocytes, such as monocytes and neutrophils, enhancing numerous functions of these cells and promoting thrombosis and inflammation. Leukocyte-platelet aggregates are increased in children with Kawasaki disease during the acute phase of the disease and can be used as biomarkers for disease severity. Here we review the role of platelets in Kawasaki disease and discuss progress in understanding the immune-effector role of platelets in amplifying inflammation related to Kawasaki disease vasculitis and therapeutic strategies targeting platelets or platelet-derived molecules.
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