A mechanistic protrusive-based model for 3D cell migration

Autor: Francisco Merino-Casallo, Maria Jose Gomez-Benito, Ruben Martinez-Cantin, Jose Manuel Garcia-Aznar
Jazyk: angličtina
Rok vydání: 2022
Předmět:
Zdroj: European Journal of Cell Biology, Vol 101, Iss 3, Pp 151255- (2022)
Druh dokumentu: article
ISSN: 0171-9335
DOI: 10.1016/j.ejcb.2022.151255
Popis: Cell migration is essential for a variety of biological processes, such as embryogenesis, wound healing, and the immune response. After more than a century of research—mainly on flat surfaces—, there are still many unknowns about cell motility. In particular, regarding how cells migrate within 3D matrices, which more accurately replicate in vivo conditions. We present a novel in silico model of 3D mesenchymal cell migration regulated by the chemical and mechanical profile of the surrounding environment. This in silico model considers cell’s adhesive and nuclear phenotypes, the effects of the steric hindrance of the matrix, and cells ability to degradate the ECM. These factors are crucial when investigating the increasing difficulty that migrating cells find to squeeze their nuclei through dense matrices, which may act as physical barriers. Our results agree with previous in vitro observations where fibroblasts cultured in collagen-based hydrogels did not durotax toward regions with higher collagen concentrations. Instead, they exhibited an adurotactic behavior, following a more random trajectory. Overall, cell’s migratory response in 3D domains depends on its phenotype, and the properties of the surrounding environment, that is, 3D cell motion is strongly dependent on the context.
Databáze: Directory of Open Access Journals