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Updated: Sep 15, 2025

Live Cell Imaging during Mechanical Stretch
Published on: August 19, 2015
Mechanical stretch promotes sustained proliferation and inflammation in developing human airway smooth muscle
Li Y Drake1, Daniel Pfeffer-Kleemann1, Emily Y Zhang1
1Department of Anesthesiology and Perioperative Medicine, Mayo Clinic, Rochester, Minnesota, United States.
Insights
Mechanical stretch from respiratory support in preterm infants causes long-term airway smooth muscle cell proliferation and inflammation. This may contribute to airway remodeling in infants receiving continuous positive airway pressure (CPAP).
Area of Science:
- Neonatal respiratory physiology
- Cellular mechanobiology
- Airway smooth muscle biology
Background:
- Preterm infants often need respiratory support like continuous positive airway pressure (CPAP).
- CPAP involves mechanical stretch on developing airways, but its long-term effects are unclear.
- Human fetal airway smooth muscle (fASM) cells are crucial for airway contractility and remodeling.
Purpose of the Study:
- To investigate the impact of CPAP-like mechanical stretch on fASM cells.
- To explore the role of mechanosensitive ion channels Piezo1 and Piezo2 in these responses.
- To understand the long-term consequences of mechanical stretch on airway development.
Main Methods:
- Used human fetal airway smooth muscle (fASM) cells as a model.
- Applied CPAP-like static stretch to fASM cells.
- Assessed Piezo1 and Piezo2 protein expression, cell proliferation, IL-6 production, and extracellular matrix deposition.
- Utilized Piezo1 antagonist GsMTx4 and Piezo channel inhibition.
Main Results:
- CPAP-like stretch did not immediately alter Piezo1/Piezo2 expression, proliferation, or IL-6 production.
- Long-term effects included increased fASM cell proliferation and IL-6 production post-stretch.
- Stretch did not enhance extracellular matrix deposition.
- Piezo1 antagonist GsMTx4 affected proliferation differently in stretched vs. non-stretched cells; Piezo inhibition did not impact IL-6.
Conclusions:
- Mechanical stretch from CPAP induces sustained increases in fASM cell proliferation and inflammation.
- These long-term changes may contribute to airway remodeling in former preterm infants.
- Mechanosensitive Piezo channels, particularly Piezo1, may play a role in the stretch-induced proliferation response.
Abstract:
Preterm infants frequently require respiratory support, including continuous positive airway pressure (CPAP), that imposes mechanical stretch on highly compliant perinatal airways. How this excess stress impacts airway development and function is not completely understood. Using human fetal airway smooth muscle (fASM), a key cell type in airway contractility and remodeling, as a model, we investigated the effects of stretch, focusing on the role of mechanosensitive ion channels Piezo1 and Piezo2. We found that CPAP-like static stretch did not alter Piezo1 and Piezo2 protein expression per se and had a minimal effect on fASM cell proliferation or IL-6 production during the stretch period. However, CPAP-like stretch produces long-term effects in fASM, leading to increased cell proliferation and IL-6 production during the poststretch period, though interestingly, it does not enhance extracellular matrix deposition. The role of Piezo channels appears context-dependent in that the Piezo1 antagonist GsMTx4 reduced baseline proliferation in nonstretched cells but slightly increased proliferation in stretched cells. Piezo1 and Piezo2 inhibition did not alter IL-6 production. These results suggest that stretch induces a sustained increase in cell proliferation and inflammatory responses, which may contribute to long-term remodeling in former preterm infants initially exposed to CPAP.NEW & NOTEWORTHY Mechanical stretch associated with respiratory support can impair airway development and function in neonates, but the mechanisms are not fully understood. Using developing human airway smooth muscle cells exposed to cyclic forces with static stretch to mimic continuous positive airway pressure, we found that stretch dysregulates long-term cell proliferation and inflammatory cytokine production, and mechanosensitive Piezo ion channels may play a role in the proliferation response.
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