Related Experiment Video
Updated: May 6, 2026

Improved Visualization and Quantitative Analysis of Drug Effects Using Micropatterned Cells
Published on: December 2, 2010
Polarity, cell division, and out-of-equilibrium dynamics control the growth of epithelial structures
Benedetta Cerruti1, Alberto Puliafito, Annette M Shewan
1Institute for Cancer Research and Treatment (IRCC), Candiolo 10060, Italy.
Abstract:
The growth of a well-formed epithelial structure is governed by mechanical constraints, cellular apico-basal polarity, and spatially controlled cell division. Here we compared the predictions of a mathematical model of epithelial growth with the morphological analysis of 3D epithelial structures. In both in vitro cyst models and in developing epithelial structures in vivo, epithelial growth could take place close to or far from mechanical equilibrium, and was determined by the hierarchy of time-scales of cell division, cell-cell rearrangements, and lumen dynamics. Equilibrium properties could be inferred by the analysis of cell-cell contact topologies, and the nonequilibrium phenotype was altered by inhibiting ROCK activity. The occurrence of an aberrant multilumen phenotype was linked to fast nonequilibrium growth, even when geometric control of cell division was correctly enforced. We predicted and verified experimentally that slowing down cell division partially rescued a multilumen phenotype induced by altered polarity. These results improve our understanding of the development of epithelial organs and, ultimately, of carcinogenesis.
More Related Videos
12:15The C. elegans Intestine As a Model for Intercellular Lumen Morphogenesis and In Vivo Polarized Membrane Biogenesis at the Single-cell Level: Labeling by Antibody Staining, RNAi Loss-of-function Analy
Published on: October 3, 2017
11:04Control of Cell Geometry through Infrared Laser Assisted Micropatterning
Published on: July 10, 2021
Related Concept Videos
Cell Polarization by Rho Proteins
Polarity of the Cytoskeleton
Cells Coordinate Growth and Proliferation
Cells Coordinate Growth and Proliferation
Assembly of Complex Microtubule Structures
Cell Migration