Engineering & Technologypreprint2026-08-20

Morphogenesis of a stratified cell mound at a vortex defect

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Abstract

Although topological defects in cell monolayers have been recognized as mechanical organizing centers in morphogenetic processes, the mechanism by which cells coordinate their motion at such defects and self-organize into higher-order structures remains elusive. Here, we report the formation of three-dimensional (3D) multicellular mounds in unconfined myoblast monolayers, at well-controlled vortex topological defects. Prior to the onset of bilayering, the vortex structure induces millimeter-scale cell flows converging toward the defect center. As a result, 3D cell mounds form at the defect core, layer-by-layer. These mounds grow by interlayer permeation sustained by the converging cell flows. At late stages, the bell shape of the structured mounds can be modeled with a dynamics driven by these converging flows. Our results therefore highlight the crucial role of integer topological defects in driving large-scale cell flows yielding the formation of highly ordered 3D tissues from a monolayer. We propose that similar mechanisms may be at play in certain morphogenetic and tumorigenic events.

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View paper (DOI)Open access versionOpenAlexbioRxiv (Cold Spring Harbor Laboratory)Published 2026-08-20

Authors: Hsiang‐Ying Chen, Carlès Blanch-Mercader, Caroline Giuglaris, Jacques Prost, Pascal Silberzan

Institutions: Institut Curie