AI Article Synopsis

  • Idiopathic pulmonary fibrosis (IPF) is a severe lung disease characterized by the replacement of healthy lung tissue with stiff scar tissue due to activated fibroblasts and collagen-I.
  • The study examined how the stiffening of the extracellular matrix and the growth factor TGF-β1 work together to regulate collagen levels in both normal and fibrotic lung conditions, highlighting the importance of cellular pathways such as FAK/Akt.
  • Results indicated that fibroblasts from IPF patients showed higher collagen-I expression and pathway activation when exposed to stiff environments and TGF-β1, suggesting these factors contribute significantly to the disease's progression.

Article Abstract

Idiopathic pulmonary fibrosis (IPF) is an aggressive disease in which normal lung parenchyma is replaced by a stiff dysfunctional scar rich in activated fibroblasts and collagen-I. We examined how the mechanochemical pro-fibrotic microenvironment provided by matrix stiffening and TGF-β1 cooperates in the transcriptional control of collagen homeostasis in normal and fibrotic conditions. For this purpose we cultured fibroblasts from IPF patients or control donors on hydrogels with tunable elasticity, including 3D collagen-I gels and 2D polyacrylamide (PAA) gels. We found that TGF-β1 consistently increased while decreasing mRNA levels in hydrogels exhibiting pre-fibrotic or fibrotic-like rigidities concomitantly with an enhanced activation of the FAK/Akt pathway, whereas FAK depletion was sufficient to abrogate these effects. We also demonstrate a synergy between matrix stiffening and TGF-β1 that was positive for and negative for . Remarkably, the expression upregulation elicited by TGF-β1 alone or synergistically with matrix stiffening were higher in IPF-fibroblasts compared to control fibroblasts in association with larger FAK and Akt activities in the former cells. These findings provide new insights on how matrix stiffening and TGF-β1 cooperate to elicit excessive collagen-I deposition in IPF, and support a major role of the FAK/Akt pathway in this cooperation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5713399PMC
http://dx.doi.org/10.3390/ijms18112431DOI Listing

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