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Published on: May 29, 2020
Autoimmune Aspects of Kawasaki Disease
1Department of Pediatrics, Matsubara Tokushukai Hospital, Osaka, Japan.
Insights
Kawasaki disease (KD) involves autoimmune responses where anti-endothelial cell autoantibodies (AECAs) may trigger vasculitis and thrombosis. Identifying AECA-associated vasculitis as a KD subtype could improve diagnosis.
Area of Science:
- Immunology
- Cardiovascular Medicine
- Pathology
Background:
- Kawasaki disease (KD) is a vasculitis affecting medium-sized vessels, characterized by hypercytokinemia.
- Its etiology is unknown, but infection and genetics are implicated.
- Endothelial damage, thrombin generation, and B-cell activation occur during KD's acute phase.
Purpose of the Study:
- To explore the role of anti-endothelial cell autoantibodies (AECAs) in Kawasaki disease pathogenesis.
- To propose a pathogenic mechanism involving immunothrombosis and AECAs.
- To suggest KD may comprise subtypes, including AECA-associated vasculitis.
Main Methods:
- Analysis of existing studies on KD, AECAs, and immunothrombosis.
- Hypothesizing a mechanism linking microbial cross-reactivity, endothelial damage, and thrombosis.
- Connecting endothelial damage to coronary artery lesions and aneurysms.
Main Results:
- Polyclonal antibodies may cross-react with endothelial cells, leading to AECA formation.
- AECAs can activate endothelial cells, causing inflammation and a hypercoagulable state.
- This process may lead to vasculitis, aneurysms, and platelet-driven arterial thrombosis.
Conclusions:
- Autoimmunity-associated thrombosis, initiated by AECAs binding to endothelial cells, is a potential major pathogenic mechanism in some KD subtypes.
- Recognizing KD subtypes, particularly AECA-associated vasculitis, can enhance understanding and diagnosis.
- This perspective may facilitate earlier and more accurate diagnosis of Kawasaki disease.
Abstract:
Kawasaki disease (KD) is a vasculitis that is part of systemic vasculitis syndrome. It affects medium-sized vessels and is characterized by hypercytokinemia. Although the etiology of KD remains unidentified, epidemiological features point to the role of infection and genetic predisposition. Recent studies on KD revealed endothelial damage and resultant thrombin generation, as well as B-cell activation during the acute phase. Several antiendothelial cell autoantibodies (AECAs) have been identified in KD patients. Analysis of this phenomenon together with the recently developed concept of immunothrombosis reveals a potential pathogenic mechanism for KD. First, polyclonal antibodies generated against invading microorganisms would exhibit cross-reactivity toward endothelial cell components and become dominant during affinity maturation. Binding of AECAs to endothelial cells would cause endothelial activation or damage, with proinflammatory cytokine release, thus fostering a hypercoagulable state resulting from leukocyte activation by proinflammatory cytokines. This, in turn, would lead to coronary artery lesions. KD vasculitis might be initiated upon binding of AECAs to the vasa vasorum and progress to panvasculitis and a vulnerable vessel wall, resulting in an aneurysm. The aneurysm would cause flow recirculation and alteration of wall shear stress. Consequently, platelets activated by shear stress, along with ultralarge von Willebrand factor (VWF) released by endothelial cells, would cause platelet-driven arterial thrombosis. Autoimmunity-associated thrombosis initiated by binding of AECAs to endothelial cells might play a major role in the pathogenesis of certain subtypes of KD. The notion of KD consisting of subtypes, the major one of which is AECA-associated vasculitis, will help improve our understanding of KD and further promote early and accurate diagnosis, which remains challenging.
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