Fibroblast PIEZO1 Promotes Autoimmune Valvular Carditis 2328060
Abstract
Abstract Introduction Cardiac valve inflammation accompanies several autoantibody-mediated diseases. Interestingly, this pathology is typically restricted to the higher pressure left side of the heart (mitral and aortic valves), suggesting a link between mechanical stress and inflammation. The K/B.g7 mouse model of autoimmune arthritis and valvular carditis recapitulates key aspects of autoimmune valvular carditis in humans, including attack of the left-sided cardiac valves. We hypothesized that mechanosensing drives this side-specific susceptibility and investigated the role of PIEZO1, a mechanosensitive ion channel, in mediating autoimmune valvular carditis. Methods Using the K/B.g7 mouse model, we conditionally deleted PIEZO1 in endothelial cells (Cdh5-Cre), macrophages (Cx3Cr1-Cre), and fibroblasts (Tcf21-Cre). Cdh5 and Tcf21 Cre-mediated deletion were induced via oral tamoxifen gavage at 4 weeks of age, whereas Cx3cr1 Cre-mediated deletion was constitutive. Hearts were harvested from 8-week-old mice. Valve thickness and pathology were quantified via hematoxylin and eosin (H&E) staining of histological sections. Results Deletion of PIEZO1 in Tcf21+ fibroblasts significantly reduced valve inflammation and thickening (p = 0.0343). In contrast, PIEZO1 deletion in endothelial cells (p = 0.7984) or macrophages (p = 0.9118) did not attenuate pathology. Preliminary experiments show no significant differences in valve adhesion receptor expression, cellular proliferation, or collagen organization following fibroblast-specific loss of PIEZO1. Conclusion These results demonstrate that PIEZO1 expressed by Tcf21+ fibroblasts is a critical contributor to mitral valve inflammation in autoimmune valvular carditis. While specific downstream mechanisms remain to be elucidated, they likely include numerical cell changes, extracellular matrix remodeling, and/or altered intercellular communication. These findings suggest that fibroblast-mediated mechanosensing could underlie the left-sided bias observed in autoimmune valvular carditis. Funding Source 1T32HL166142-01 5T32AI007313-36 5R01HL121093-10 Topic Categories Basic Autoimmunity (BA)
Article Details
Journal Info
The Journal of Immunology
American Association of Immunologists
Authors (6)
Charles Roll
Univ. of Minnesota, Twin Cities
Jennifer Auger
University of Minnesota
Lucas Menendez
Florida International University
Alyssa Peck
University of Minnesota
Michelle Tallquist
UNIVERSITY HAWAII, Honolulu, Hawaii, United States
Bryce Binstadt
University of Minnesota