12–17 Jul 2026
University of Graz
Europe/Vienna timezone

Data Driven Modeling of Limb Bud Growth and Morphogenesis

MS170-01
17 Jul 2026, 10:40
20m
02.23 - HS (University of Graz)

02.23 - HS

University of Graz

112
Minisymposium Talk Cellular and Developmental Biology Mechanochemical modelling of patterning in developmental systems

Speaker

Tim Liebisch (EMBL Barcelona)

Description

Limb development is regulated by feedback between the tissue-scale mechanics and cellular decisions–migration, contraction, division, and death–implemented through gene-regulatory networks. The dynamically changing states of these cellular networks reflect the decisions being made. To integrate these interactions across 3 scales: genes, cells, and tissues, we develop a 3D cell-based model in which cellular decisions are spatially regulated by morphogen gradients. By constraining parameters with empirical data and optimizing against wild-type limb-bud shape, we obtain a model that links signal distributions to emergent mechanical behaviors.

Multiple mechanisms have been proposed for limb-bud morphogenesis, including ectodermal mechanical constraints, proliferation gradients, oriented divisions, distally biased migration, motility gradients, and convergent extension. Yet which spatio-temporal combinations of these activities generate correct morphology remains unresolved.

We use the model to test whether convergent extension alone is sufficient to reproduce limb-bud outgrowth and shaping. We compare 2 distinct modes of convergence: (1) orthogonal to an AER/FGF8-associated proximo-distal cue, and (2) parallel to a surface-to-core (radial) cue consistent with Wnt3a. For each mode, we quantify how the strength and timing of convergent extension affects predicted shape trajectories and whether either mode–or a combination of both–can match wild-type morphology.

Author

Tim Liebisch (EMBL Barcelona)

Co-author

James Sharpe (EMBL Barcelona)

Presentation materials

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