dc.contributor.author
Barnett, Samuel F.H.
dc.contributor.author
Cartagena-Rivera, Alexander X.
dc.contributor.author
Selhuber-Unkel, Christine
dc.contributor.author
Prevedel, Robert
dc.contributor.author
Trepat Guixer, Xavier
dc.contributor.author
Spatz, Joachim P.
dc.contributor.author
Ivaska, Johanna
dc.contributor.author
Scita, Giorgio
dc.contributor.author
Cavalcanti-Adam, Elisabetta A.
dc.contributor.author
Lemahieu, Grégoire
dc.contributor.author
Moreno-Layseca, Paulina
dc.contributor.author
Hub, Tobias
dc.contributor.author
Bevilacqua, Carlo
dc.contributor.author
Gómez González, Manuel
dc.contributor.author
Pennarola, Federica
dc.contributor.author
Colombo, Ferran
dc.contributor.author
Massey, Andrew E.
dc.contributor.author
Barzaghi, Leonardo
dc.contributor.author
Palamidessi, Andrea
dc.contributor.author
Homagk, Leon-Luca
dc.date.accessioned
2026-03-04T00:59:11Z
dc.date.available
2026-03-04T00:59:11Z
dc.date.issued
2026-03-03T11:40:44Z
dc.date.issued
2026-03-03T11:40:44Z
dc.date.issued
2025-09-11
dc.date.issued
2026-03-03T11:40:45Z
dc.identifier
https://hdl.handle.net/2445/227817
dc.identifier.uri
https://hdl.handle.net/2445/227817
dc.description.abstract
Unjamming transitions from a solid-like to a fluid-like state are a gateway to breast epithelial cancer invasion. However, the mechanical interplay between phase transitions and dimension transitions, in particular wetting, remains elusive, despite being critical for understanding the onset of metastatic dissemination. This study shows that unjamming, mediated by the RAB5A GTPase, alters carcinoma spheroid fluidity, rigidity, and rewires adhesion mechanics to drive supracellular active wetting as a new mode of tumor expansion. Spheroid fluidification enhances the selective expression of integrin subunits and increases focal adhesion dynamics, inducing a fluid-like spreading behavior on specific matrix ligands. Notably, nanoscale regulation of integrin clustering can select for distinct phase transitions at the collective scale upon wetting. In this framework, fluidized spheroids polarize into cohesive “supracells”, and maintain a stiff peripheral actin bundle as measured by nanomechanical mapping. Furthermore, a combination of Brillouin microscopy and 2.5D traction force analysis reveals a mechanical switch within the spheroid core, characterized by significant cell softening and a reduction in compressive forces exerted on the substrate, thereby mimicking the wetting of a liquid droplet. These findings establish unjamming-driven active wetting as a key mechanism to comprehend the molecular and biophysical underpinnings of solid tumor invasion.
dc.format
application/pdf
dc.publisher
Wiley-VCH Verlag
dc.relation
Reproducció del document publicat a: https://doi.org/10.1002/advs.202503569
dc.relation
Advanced Science, 2025, vol. 12, num.34, p. 1-18
dc.relation
https://doi.org/10.1002/advs.202503569
dc.rights
cc-by (c) Lemahieu, G. et al., 2025
dc.rights
http://creativecommons.org/licenses/by/4.0/
dc.rights
info:eu-repo/semantics/openAccess
dc.subject
Càncer de mama
dc.title
RAB5A Promotes Active Fluid Wetting by Reprogramming Breast Cancer Spheroid Mechanics
dc.type
info:eu-repo/semantics/article
dc.type
info:eu-repo/semantics/publishedVersion