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FGF receptors mediate cellular senescence in the cystic fibrosis airway epithelium
Molly Easter, Meghan June Hirsch, Elex Harris, Patrick Henry Howze IV, Emma Lea Matthews, Luke I. Jones, Seth Bollenbecker, Shia Vang, Daniel J. Tyrrell, Yan Y. Sanders, Susan E. Birket, Jarrod W. Barnes, Stefanie Krick
Molly Easter, Meghan June Hirsch, Elex Harris, Patrick Henry Howze IV, Emma Lea Matthews, Luke I. Jones, Seth Bollenbecker, Shia Vang, Daniel J. Tyrrell, Yan Y. Sanders, Susan E. Birket, Jarrod W. Barnes, Stefanie Krick
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Research Article Cell biology Pulmonology

FGF receptors mediate cellular senescence in the cystic fibrosis airway epithelium

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Abstract

The number of adults living with cystic fibrosis (CF) has already increased significantly because of drastic improvements in life expectancy attributable to advances in treatment, including the development of highly effective modulator therapy. Chronic airway inflammation in CF contributes to morbidity and mortality, and aging processes like inflammaging and cell senescence influence CF pathology. Our results show that single-cell RNA sequencing data, human primary bronchial epithelial cells from non-CF and CF donors, a CF bronchial epithelial cell line, and Cftr-knockout (Cftr–/–) rats all demonstrated increased cell senescence markers in the CF bronchial epithelium. This was associated with upregulation of fibroblast growth factor receptors (FGFRs) and mitogen-activated protein kinase (MAPK) p38. Inhibition of FGFRs, specifically FGFR4 and to some extent FGFR1, attenuated cell senescence and improved mucociliary clearance, which was associated with MAPK p38 signaling. Mucociliary dysfunction could also be improved using a combination of senolytics in a CF ex vivo model. In summary, FGFR/MAPK p38 signaling contributes to cell senescence in CF airways, which is associated with impaired mucociliary clearance. Therefore, attenuation of cell senescence in the CF airways might be a future therapeutic strategy improving mucociliary dysfunction and lung disease in an aging population with CF.

Authors

Molly Easter, Meghan June Hirsch, Elex Harris, Patrick Henry Howze IV, Emma Lea Matthews, Luke I. Jones, Seth Bollenbecker, Shia Vang, Daniel J. Tyrrell, Yan Y. Sanders, Susan E. Birket, Jarrod W. Barnes, Stefanie Krick

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Figure 8

Systemic FGFR inhibition in Cftr–/– rats leads to decreased cellular senescence in the lung and improved mucociliary clearance.

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Systemic FGFR inhibition in Cftr–/– rats leads to decreased cellular sen...
(A) Representative images of immunohistochemical staining for p16 and p21 in Cftr–/– and control rat lungs ± AZD4547 treatment (scale bar = 100 μm, original magnification, ×20). (B) Representative immunoblot images and bar graphs demonstrating densitometric analyses of p21 and BCL-xL protein expression in Cftr–/– rat lungs ± AZD4547 treatment. (C) Representative immunoblot images of phosphorylated and total p38 MAPK and densitometric analysis. (D) IL-8 protein levels in Cftr–/– rat lung tissue ± AZD4547 treatment. (E) Representative images showing mucociliary transport (MCT) (cross-sectional arrow in blue indicates the velocity of the mucus particle via the slope), along with representative µOCT images of the trachea of Cftr–/– rats (yellow line representing airway surface liquid [ASL] depth and the red line representing periciliary liquid depth; ep, epithelial layer; lp, lamina propria). (F) Bar graphs indicating analysis of µOCT images quantifying ASL, ciliary beat frequency (CBF), periciliary liquid depth (PCL), and MCT from Cftr–/– rat trachea after treatment for 5 days with AZD4547 (12.5 mg/kg) or sham. Statistical analysis was done using unpaired Student’s t test showing means ± SEM with *P < 0.05, **P < 0.01, with n = 3–4 rats per group.

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