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Autophagy-mitophagy induction attenuates cardiovascular inflammation in a murine model of Kawasaki disease vasculitis

Authors :
Stefanie Marek-Iannucci
Asli B. Ozdemir
Debbie Moreira
Angela C. Gomez
Malcolm Lane
Rebecca A. Porritt
Youngho Lee
Kenichi Shimada
Masanori Abe
Aleksandr Stotland
David Zemmour
Sarah Parker
Elsa Sanchez-Lopez
Jennifer Van Eyk
Roberta A. Gottlieb
Michael C. Fishbein
Michael Karin
Timothy R. Crother
Magali Noval Rivas
Moshe Arditi
Source :
JCI Insight, Vol 6, Iss 18 (2021)
Publication Year :
2021
Publisher :
American Society for Clinical investigation, 2021.

Abstract

Kawasaki disease (KD) is the leading cause of acquired heart disease among children. Murine and human data suggest that the NLRP3–IL-1β pathway is the main driver of KD pathophysiology. NLRP3 can be activated during defective autophagy/mitophagy. We used the Lactobacillus casei cell wall extract (LCWE) murine model of KD vasculitis to examine the role of autophagy/mitophagy on cardiovascular lesion development. LCWE-injected mice had impaired autophagy/mitophagy and increased levels of ROS in cardiovascular lesions, together with increased systemic 8-OHdG release. Enhanced autophagic flux significantly reduced cardiovascular lesions in LCWE-injected mice, whereas autophagy blockade increased inflammation. Vascular smooth muscle cell–specific deletion of Atg16l1 and global Parkin–/– significantly increased disease formation, supporting the importance of autophagy/mitophagy in this model. Ogg1–/– mice had significantly increased lesions with increased NLRP3 activity, whereas treatment with MitoQ reduced vascular tissue inflammation, ROS production, and systemic 8-OHdG release. Treatment with MN58b or Metformin (increasing AMPK and reducing ROS) resulted in decreased cardiovascular lesions. Our results demonstrate that impaired autophagy/mitophagy and ROS-dependent damage exacerbate the development of murine KD vasculitis. This pathway can be efficiently targeted to reduce disease severity. These findings enhance our understanding of KD pathogenesis and identify potentially novel therapeutic avenues for KD treatment.

Details

Language :
English
ISSN :
23793708
Volume :
6
Issue :
18
Database :
Directory of Open Access Journals
Journal :
JCI Insight
Publication Type :
Academic Journal
Accession number :
edsdoj.8c3c23459c15468788622df34392f6d5
Document Type :
article
Full Text :
https://doi.org/10.1172/jci.insight.151981