Mechanochemical patterning localizes the organizer of a luminal epithelium.

Weevers, Sera L; Falconer, Alistair D; Mercker, Moritz; Sadeghi, Hajar; Rozema, David; Ferenc, Jaroslav; Maître, Jean-Leon; Ott, Albrecht et al. · Sci Adv · 2025

basic_science · Level V

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Abstract

The spontaneous emergence of tissue patterns is often attributed to biochemical reaction-diffusion systems. In <i>Hydra</i> tissue regeneration, the formation of a Wnt signaling center exemplifies this process. However, a strictly biochemical mechanism for self-organization in <i>Hydra</i> remains elusive. In this study, we investigated mechanical stimuli and identified a positive feedback loop between Wnt signaling and tissue stretching. We developed a mathematical model of mechanochemical pattern formation in a closed elastic shell, representing regenerating <i>Hydra</i> epithelial spheroids. Our model explains how mechanical forces drive axis formation and predict the organizer's location under various perturbations. Validation by partially confining regenerating tissues showed that the organizer forms in regions with the greatest stretching potential. This work highlights a versatile mechanochemical mechanism for luminal epithelium patterning, which is relevant across various biological systems.

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