Many biological processes, including tissue morphogenesis, are driven by cell sorting. However, the primary mechanical drivers of sorting in multicellular aggregates (MCAs) remain controversial, in part because there is no appropriate computational model to probe mechanical interactions between cells. To address this important issue, we developed a three-dimensional, local force-based simulation based on the subcellular element method. In our method, cells are modelled as collections of locally interacting force-bearing elements. We use the method to investigate the effects of tension and cell-cell adhesion on MCA sorting. We predict a minimum level of adhesion to produce inside-out sorting of two cell types, which is in excellent agreement...
International audienceCell adhesion is crucial for many types of cell, conditioning differentiation,...
During embryonic development, the behavior of individual cells must be coordinated to create the lar...
Studying the biophysical interactions between cells is crucial to understanding how normal tissue de...
Many biological processes, including tissue morphogenesis, are driven by cell sorting. However, in p...
The actions of cell adhesion molecules, in particular, cadherins during embryonic development and mo...
The actions of cell adhesion molecules, in particular, cadherins during embryonic development and mo...
This thesis extends an existing cell population modelling framework to investigate two different hyp...
The three-dimensional nature of tissue establishes a biophysical environment which regulates auto- ...
Cells adhere to each other through the binding of cell adhesion molecules at the cell surface. This ...
Cell sorting, whereby a heterogeneous cell mixture organizes into distinct tissues, is a fundamental...
Cell adhesion refers to the ability of cells to make enduring and dynamic attachments to extracellul...
We investigate morphologies of proliferating cellular tissues using a numerical simulation model for...
Differential movement of individual cells within tissues is an important yet poorly understood proce...
The self-organization of cells into complex tissues during growth and regeneration is a combination ...
International audienceCell sorting, whereby a heterogeneous cell mixture segregates and forms distin...
International audienceCell adhesion is crucial for many types of cell, conditioning differentiation,...
During embryonic development, the behavior of individual cells must be coordinated to create the lar...
Studying the biophysical interactions between cells is crucial to understanding how normal tissue de...
Many biological processes, including tissue morphogenesis, are driven by cell sorting. However, in p...
The actions of cell adhesion molecules, in particular, cadherins during embryonic development and mo...
The actions of cell adhesion molecules, in particular, cadherins during embryonic development and mo...
This thesis extends an existing cell population modelling framework to investigate two different hyp...
The three-dimensional nature of tissue establishes a biophysical environment which regulates auto- ...
Cells adhere to each other through the binding of cell adhesion molecules at the cell surface. This ...
Cell sorting, whereby a heterogeneous cell mixture organizes into distinct tissues, is a fundamental...
Cell adhesion refers to the ability of cells to make enduring and dynamic attachments to extracellul...
We investigate morphologies of proliferating cellular tissues using a numerical simulation model for...
Differential movement of individual cells within tissues is an important yet poorly understood proce...
The self-organization of cells into complex tissues during growth and regeneration is a combination ...
International audienceCell sorting, whereby a heterogeneous cell mixture segregates and forms distin...
International audienceCell adhesion is crucial for many types of cell, conditioning differentiation,...
During embryonic development, the behavior of individual cells must be coordinated to create the lar...
Studying the biophysical interactions between cells is crucial to understanding how normal tissue de...