Abstract Rationale Premature birth necessitates interventions such as supplemental O2 (hyperoxia, typically 60% O2) with or without respiratory support primarily using nasal CPAP. The static stretch of CPAP can induce sustained airway hyperresponsiveness (AHR) and airway thickening (remodeling) even after CPAP is stopped - effects that contribute to a wheezing phenotype and predispose to asthma, major sources of respiratory morbidity in former “preemies.” Effects of CPAP can impact airway smooth muscle (ASM), a key cell type in asthma. We sought to find out if mechanosensitive Piezo (PZ) channels in developing ASM contribute to CPAP-induced AHR and remodeling. In other cell systems, PZ affects the Wnt/β-catenin (β-cat) pathway, but there is currently little information on how stretch influences this pathway and its downstream role in developing ASM. Our overall hypothesis is that in developing airways, PZ channels and downstream Wnt/β-cat pathway are linked in the context of stretch effects, leading to AHR and remodeling. Methods Fetal ASM (fASM) cells were isolated from lungs of 18-20-week fetuses (Mayo IRB exempt). Neonatal mice (comparable to late gestation humans) were also used; lung tissue was harvested following IACUC protocols. Western blot (WB), qRT-PCR, immunofluorescence imaging (IF), extracellular matrix (ECM) deposition assay, proliferation assay, and precision cut lung slice (PCLS) imaging were performed. Stretch conditions used were “non-stretch” (0% static strain imposed on 5% cyclic strain representing normal breathing) or “stretch” (5-10% static strain imposed on 5% cyclic strain, representing superimposed CPAP). Compounds used were Yoda1 (PZ1 agonist), GsMTx4 (PZ inhibitor), DKK1 (Wnt pathway inhibitor), and Wnt3a ligand. Results PZ1 and PZ2 are expressed in fASM and stretch increased expression of both, shown by qRT-PCR and WB. In neonatal mice exposed to CPAP, lumen area of PCLS were decreased compared to control; GsMTx4 alleviated this effect. Stretch increased ECM in fASM, however the effect was blunted by GsMTx4. Stretch increased mRNA for canonical Wnt pathway elements and decreased negative regulatory elements. Stretch increased GSK3β protein phosphorylation and β-cat protein nuclear translocation; effects blunted by DKK1. Wnt3a ligand increased proliferation and ECM in fASM. Stretch increased Wnt3a mRNA and β-cat protein nuclear translocation, with effects blunted by GsMTx4. Stretch alone or in combination with Wnt3a ligand, as well as Yoda1 alone, increased nuclear β-cat, shown qualitatively by IF. Conclusions Our study showed that Wnt/β-cat may be a novel, important, and conceivably targetable pathway (e.g. with PZ modulators) in alleviating potentially long-term, detrimental airway responses to CPAP. This abstract is funded by: NIH R01 HL056470 (Prakash), R01 HL177837 (Pabelick)
Hamrick et al. (Fri,) studied this question.