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January 17, 2026ERJ Open Research0 citationsOpen Access

Hippo pathway activation drives fibrogenic remodeling in influenza a virus–infected lung fibroblasts

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YRYasmina ReisserEWElaine WinklerJHJúlia Hoffmann

Key Points

  • This research aims to explore how Influenza A virus (IAV) infection affects fibrogenic remodeling in lung fibroblasts through the Hippo signaling pathway.
  • Analyzed viral load, cytokine release, and transcriptomic changes post-IAV infection.
  • Evaluated effects on fibrosis using conditioned media from infected alveolar macrophages on IMR-90 fibroblasts.
  • Conducted direct IAV infection on IMR-90 cells to assess changes in the Hippo pathway and fibrotic markers.
  • IAV infection led to fibrogenesis in lung fibroblasts via cytokine release from macrophages and direct modulation of the Hippo pathway.
  • Key fibrotic markers, including CTGF, fibronectin, and collagen I, were upregulated in response to IAV infection.
  • The study validated an experimental model of IAV-infected macrophages contributing to fibrosis.

Abstract

Background Pulmonary fibrosis is a progressive and often fatal interstitial lung disease with largely undefined etiology. Alveolar macrophages and lung fibroblasts play key roles in maladaptive tissue remodeling; however, the cellular and molecular mechanisms underlying their coordinated fibrotic responses remain incompletely characterized. Methods Following IAV infection, viral load, cytokine release, and transcriptomic changes were analysed. To assess indirect effects on fibrosis, IMR-90 fibroblasts were treated with conditioned media from infected AML cells. Direct IAV infection of IMR-90 cells was also performed to evaluate changes in the Hippo signalling pathway and fibrotic marker expression using microarray and transcriptomic approaches. Results For the first time, AML cells were successfully infected with IAV, validating this model for studying pathogen-driven exacerbation of fibrosis in aging lungs. Transcriptomic and protein-level analyses revealed that IAV promotes fibrogenesis in fibroblasts through two distinct mechanisms: (I) indirectly, via pro-inflammatory and pro-fibrotic mediators released by infected macrophages, and (II) directly, through viral-induced modulation of the Hippo signalling pathway, resulting in upregulation of key fibrotic markers such as CTGF, fibronectin, and collagen I. Conclusions These findings provide novel mechanistic insights into macrophage–fibroblast crosstalk in the context of viral infection and fibrosis. They suggest that dysregulation of these interactions contributes to the susceptibility of the aging lung to fibrotic remodeling following respiratory viral infections and may inform future therapeutic interventions targeting Hippo pathway signalling.

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Cite This Study

Reisser et al. (2026) studied this question.

synapsesocial.com/papers/696b25cfd2a12237a9349266https://doi.org/10.1183/23120541.01123-2025
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