Publication | Closed Access
Inhibiting Fibroblast Mechanotransduction Modulates Severity of Idiopathic Pulmonary Fibrosis
16
Citations
41
References
2021
Year
<b>Objective:</b> Idiopathic pulmonary fibrosis (IPF) is a progressive fibrotic lung disease that affects 63 in every 100,000 Americans. Its etiology remains unknown, although inflammatory pathways appear to be important. Given the dynamic environment of the lung, we examined the significance of mechanotransduction on both inflammatory and fibrotic signaling during IPF. <b>Innovation:</b> Mechanotransduction pathways have not been thoroughly examined in the context of lung disease, and pharmacologic approaches for IPF do not currently target these pathways. The interplay between mechanical strain and inflammation in pulmonary fibrosis remains incompletely understood. <b>Approach:</b> In this study, we used conditional KO mice to block mechanotransduction by knocking out Focal Adhesion Kinase (FAK) expression in fibroblasts, followed by induction of pulmonary fibrosis using bleomycin. We examined both normal human and human IPF fibroblasts and used immunohistochemistry, quantitative real-time polymerase chain reaction, and Western Blot to evaluate the effects of FAK inhibitor (FAK-I) on modulating fibrotic and inflammatory genes. <b>Results:</b> Our data indicate that the deletion of FAK in mice reduces expression of fibrotic and inflammatory genes in lungs. Similarly, mechanical straining in normal human lung fibroblasts activates inflammatory and fibrotic pathways. The FAK inhibition decreases these signals but has a less effect on IPF fibroblasts as compared with normal human fibroblasts. <b>Conclusion:</b> Administering FAK-I at early stages of fibrosis may attenuate the FAK-mediated fibrotic response pathway in IPF, potentially mediating disease progression.
| Year | Citations | |
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2008 | 795 | |
The role of α-smooth muscle actin in fibroblast-mediated matrix contraction and remodeling Arti V. Shinde, Claudio Humeres, Nikolaos G. Frangogiannis Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease MechanobiologyMuscle PhysiologyMuscle FunctionMolecular PhysiologyFibroblast-mediated Matrix Contraction | 2016 | 551 |
2011 | 492 | |
2007 | 427 | |
2008 | 292 | |
2012 | 230 | |
2007 | 226 | |
2002 | 225 | |
2019 | 220 | |
2016 | 219 |
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