2019-02-06T12:16:54Z
2019-02-06T12:16:54Z
2016-09-09
2019-02-06T12:16:54Z
The ability of cells to follow gradients of extracellular matrix stiffness-durotaxis-has been implicated in development, fibrosis, and cancer. Here, we found multicellular clusters that exhibited durotaxis even if isolated constituent cells did not. This emergent mode of directed collective cell migration applied to a variety of epithelial cell types, required the action of myosin motors, and originated from supracellular transmission of contractile physical forces. To explain the observed phenomenology, we developed a generalized clutch model in which local stick-slip dynamics of cell-matrix adhesions was integrated to the tissue level through cell-cell junctions. Collective durotaxis is far more efficient than single-cell durotaxis; it thus emerges as a robust mechanism to direct cell migration during development, wound healing, and collective cancer cell invasion.
Article
Accepted version
English
Cèl·lules; Cèl·lules canceroses; Càncer; Cells; Cancer cells; Cancer
American Association for the Advancement of Science
Versió postprint del document publicat a: https://doi.org/10.1126/science.aaf7119
Science, 2016, vol. 353, num. 6304, p. 1157-1161
https://doi.org/10.1126/science.aaf7119
(c) Sunyer, Raimon et al., 2016