Appreciating the role of cell shape changes in the mechanobiology of epithelial tissues

Author:

Luciano Marine1ORCID,Versaevel Marie1ORCID,Vercruysse Eléonore1ORCID,Procès Anthony1ORCID,Kalukula Yohalie1ORCID,Remson Alexandre1ORCID,Deridoux Amandine1ORCID,Gabriele Sylvain1ORCID

Affiliation:

1. University of Mons, Interfaces and Complex Fluids Laboratory, Mechanobiology and Biomaterials Group, Research Institute for Biosciences, CIRMAP, 20 Place du Parc, B-7000 Mons, Belgium

Abstract

The wide range of epithelial cell shapes reveals the complexity and diversity of the intracellular mechanisms that serve to construct their morphology and regulate their functions. Using mechanosensitive steps, epithelial cells can sense a variety of different mechanochemical stimuli and adapt their behavior by reshaping their morphology. These changes of cell shape rely on a structural reorganization in space and time that generates modifications of the tensional state and activates biochemical cascades. Recent studies have started to unveil how the cell shape maintenance is involved in mechanical homeostatic tasks to sustain epithelial tissue folding, identity, and self-renewal. Here, we review relevant works that integrated mechanobiology to elucidate some of the core principles of how cell shape may be conveyed into spatial information to guide collective processes such as epithelial morphogenesis. Among many other parameters, we show that the regulation of the cell shape can be understood as the result of the interplay between two counteracting mechanisms: actomyosin contractility and intercellular adhesions, and that both do not act independently but are functionally integrated to operate on molecular, cellular, and tissue scales. We highlight the role of cadherin-based adhesions in force-sensing and mechanotransduction, and we report recent developments that exploit physics of liquid crystals to connect cell shape changes to orientational order in cell aggregates. Finally, we emphasize that the further intermingling of different disciplines to develop new mechanobiology assays will lead the way toward a unified picture of the contribution of cell shape to the pathophysiological behavior of epithelial tissues.

Funder

Interreg

Fonds pour la Formation à la Recherche dans l'Industrie et dans l'Agriculture

Fonds De La Recherche Scientifique - FNRS

European Regional Development Fund

Publisher

AIP Publishing

Subject

General Medicine

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