PUBLICATION

Interferon signaling is required for early neutrophil recruitment after zebrafish heart injury

Authors
Schmid, A.V., Gagnon, J.A.
ID
ZDB-PUB-260526-16
Date
2026
Source
Biology Open : (Journal)
Registered Authors
Gagnon, James, Schmid, Alexis
Keywords
Cryoinjury, Heart regeneration, Interferon, Neutrophils, Zebrafish
MeSH Terms
none
PubMed
42186759 Full text @ Biol. Open
Abstract
Heart injury triggers a robust cellular response in zebrafish, characterized by neovascularization, immune cell activation, and the infiltration of proliferative cardiomyocytes that collectively lead to scarless regeneration. Upon injury, damage-associated molecular patterns are released by dying cells and injured extracellular matrix. These molecules bind to pattern recognition receptors on various cell types, promoting inflammation and immune cell recruitment by upregulating chemokines and pro-inflammatory cytokines. We previously identified the activation of injury-induced interferon signaling as a distinguishing feature between the regenerative zebrafish and non-regenerative medaka. Here, we establish interferon-Φ1 (IFNϕ1) as the primary driver of interferon signaling after zebrafish heart injury. IFNϕ1 expression is induced hours after injury and directs interferon-stimulated gene expression, which peaks at 3 days post-injury. This response is lost in ifnphi1 mutants, which disrupt IFNϕ1 expression. ifnphi1 mutants have reduced neutrophil recruitment to the injured myocardium, while macrophages and neovascularization are unaffected. By studying later stages of regeneration, we find that ifnphi1 mutant hearts have a modest defect in fibrotic tissue resolution. Collectively, these findings uncover a critical early signaling cascade during the inflammatory response to heart injury and provide new insights into the mechanisms that choreograph zebrafish heart regeneration.
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