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Active forces modulate collective behaviour and cellular organization.

Authors :
Balasubramaniam L
Mège RM
Ladoux B
Source :
Comptes rendus biologies [C R Biol] 2021 Dec 20; Vol. 344 (4), pp. 325-335. Date of Electronic Publication: 2021 Dec 20.
Publication Year :
2021

Abstract

Biological tissues are composed of various cell types working cooperatively to perform their respective function within organs and the whole body. During development, embryogenesis followed by histogenesis relies on orchestrated division, death, differentiation and collective movements of cellular constituents. These cells are anchored to each other and/or the underlying substrate through adhesion complexes and they regulate force generation by active cytoskeleton remodeling. The resulting changes in contractility at the level of each single cell impact tissue architecture and remodeling by triggering changes in cell shape, cell movement and remodeling of the surrounding environment. These out of equilibrium processes occur through cellular energy consumption, allowing biological systems to be described by active matter physics. Cytoskeleton filaments, bacterial and eukaryotic cells can be considered as a sub-class of active matter termed "active nematics". These biological objects can be modelled as rod-like elements to which nematic liquid crystal theories can be applied. In this work, using an analogy from liquid crystal physics, we show that cell sorting and boundary formation can be explained using differences in nematic activity. This difference in nematic activity arises from a balance of inter- and intra-cellular activity.

Details

Language :
English
ISSN :
1768-3238
Volume :
344
Issue :
4
Database :
MEDLINE
Journal :
Comptes rendus biologies
Publication Type :
Academic Journal
Accession number :
35787604
Full Text :
https://doi.org/10.5802/crbiol.65