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Exact mechanisms of epithelial cell extrusion

Determine the exact biophysical mechanisms of epithelial cell extrusion in epithelial tissues, including quantifying the contributions of specialized actin structures on the lateral and basal cell surfaces, to clarify how dying cells are expelled while maintaining the epithelial barrier.

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Background

Epithelial tissues regulate cell density through a balance of cell division and cell extrusion, ensuring removal of dying cells without compromising barrier integrity. While extrusion is well documented and associated with actin-driven processes, the precise mechanistic pathway remains unresolved.

This paper develops a three-dimensional bubbly vertex model to paper how curvature and topological defects promote bulging and extrusion, offering theoretical insights and predictions. However, the foundational question of the exact molecular and mechanical pathways driving extrusion—beyond identifying candidate actin structures—remains open and is explicitly acknowledged by the authors.

References

The exact mechanisms of extrusion are not clear, but one important element seems to be the presence of specialized actin structures on the lateral and basal sides .

Cell bulging and extrusion in a three-dimensional bubbly vertex model for curved epithelial sheets (2411.07141 - Drozdowski et al., 11 Nov 2024) in Introduction