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Published on: February 8, 2019
Arterial immune protein expression demonstrates the complexity of immune responses in Kawasaki disease arteritis
S A Cameron1, S M White2, D Arrollo3,4
1Department of Pediatrics/Cardiology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.
Insights
This study reveals key immune proteins in Kawasaki disease (KD) coronary arteries, highlighting antigen presentation and interferon responses. Understanding these immune pathways is crucial for improving treatment for children with KD vasculitis.
Area of Science:
- Immunology
- Pediatric Cardiology
- Vascular Biology
Background:
- Kawasaki disease (KD) causes immune-mediated damage to coronary arteries in children.
- A comprehensive understanding of the immune response in KD vasculitis is needed for better patient outcomes.
- Previous research identified transcriptional profiles of KD coronary arteritis.
Purpose of the Study:
- To determine the protein expression of transcriptionally up-regulated immune genes in KD coronary arteries.
- To investigate the role of specific immune proteins in the early stages of KD vasculitis.
Main Methods:
- Analysis of coronary arteries from 12 fatal KD cases and 13 childhood controls.
- Immunohistochemistry and immunofluorescence to evaluate protein expression and localization.
- Examination of proteins including AIF1, IL-18, CD74, CD1c, CD20, TLR-7, and ZBP1.
Main Results:
- Allograft inflammatory factor 1 (AIF1) localized to macrophages and myeloid dendritic cells.
- CD74 was found in the intima-media, interacting with MHC class II.
- Transmural expression of CD1c, IL-18, and CD20 was observed; ZBP1 and TLR-7 showed less significant up-regulation.
Conclusions:
- Findings provide evidence for antigen presentation and interferon response in KD arteritis.
- The study demonstrates the complex immune response within the coronary arteries during KD.
- Results support the involvement of myeloid dendritic cells and macrophages in KD vasculitis.
Abstract:
A more complete understanding of immune-mediated damage to the coronary arteries in children with Kawasaki disease (KD) is required for improvements in patient treatment and outcomes. We recently reported the transcriptional profile of KD coronary arteritis, and in this study sought to determine protein expression of transcriptionally up-regulated immune genes in KD coronary arteries from the first 2 months after disease onset. We examined the coronary arteries of 12 fatal KD cases and 13 childhood controls for expression of a set of proteins whose genes were highly up-regulated in the KD coronary artery transcriptome: allograft inflammatory factor 1 (AIF1), interleukin 18 (IL-18), CD74, CD1c, CD20 (MS4A1), Toll-like receptor 7 (TLR-7) and Z-DNA binding protein 1 (ZBP1). Immunohistochemistry and immunofluorescence studies were performed to evaluate protein expression and co-localization, respectively. AIF1 was expressed transmurally in KD arteritis and localized to macrophages and myeloid dendritic cells. CD74, which interacts with major histocompatibility complex (MHC) class II on antigen-presenting cells, localized to the intima-media. CD1c, a marker of myeloid dendritic cells, was expressed in a transmural pattern, as were IL-18 and CD20. ZBP1 and TLR-7 were up-regulated compared to controls, but less highly compared to the other proteins. These findings provide evidence of antigen presentation and interferon response in KD arteritis. In combination with prior studies demonstrating T lymphocyte activation, these results demonstrate the complexity of the KD arterial immune response.
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