Cyclic stretch regulates epithelial cell migration in a frequency dependent manner via intercellular vinculin recruitment

  • Dow L
  • Surace S
  • Morozov K
  • et al.
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Abstract

The epithelial microenvironment is incredibly dynamic, subjected to mechanical cues including cyclic stretch. While cyclic cell stretching platforms have revealed epithelial cell reorientation and gap formation, few studies have investigated the long-term effects of cyclic stretch on cell migration. We measured the migratory response of the epithelium to a range of physiologically relevant frequencies and stretch. Our results indicate that lower stretch frequencies (i.e., 0.1 Hz) suppress epithelial migration, accompanied by cell reorientation and high cell shape solidity. We found that this response is also accompanied by increased recruitment of vinculin to cell-cell contacts, and this recruitment is necessary to suppress cell movements. These results confirm the mechanosensitive nature of vinculin within the adherens junction, but independently reveal a novel mechanism of low frequency stress response in supporting epithelial integrity by suppressing cell migration.

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Dow, L. P., Surace, S., Morozov, K., Kennedy, R., & Pruitt, B. L. (2024). Cyclic stretch regulates epithelial cell migration in a frequency dependent manner via intercellular vinculin recruitment. Npj Biological Physics and Mechanics, 1(1). https://doi.org/10.1038/s44341-024-00003-1

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