Litcius/Paper detail

Geometry-Sensitive Protrusion Growth Directs Confined Cell Migration

Johannes Flommersfeld, Stefan Stöberl, Omar Shah, Joachim O. Rädler, Chase P. Broedersz

2024Physical Review Letters15 citationsDOIOpen Access PDF

Abstract

The migratory dynamics of cells can be influenced by the complex microenvironment through which they move. It remains unclear how the motility machinery of confined cells responds and adapts to their microenvironment. Here, we propose a biophysical mechanism for a geometry-dependent coupling between cellular protrusions and the nucleus that leads to directed migration. We apply our model to geometry-guided cell migration to obtain insights into the origin of directed migration on asymmetric adhesive micropatterns and the polarization enhancement of cells observed under strong confinement. Remarkably, for cells that can choose between channels of different size, our model predicts an intricate dependence for cellular decision making as a function of the two channel widths, which we confirm experimentally.

Topics & Concepts

Cell migrationMotilityBiophysicsCoupling (piping)Cell polarityPhysicsCellChemistryCell biologyBiologyMaterials scienceBiochemistryMetallurgyCellular Mechanics and Interactions3D Printing in Biomedical ResearchMicrotubule and mitosis dynamics