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.