Key result
Spatial distribution of artificial organizing centers controls early cardiac tissue differentiation via extracellular matrix deposition.
Why the study?
The autonomous deposition of extracellular matrix had hardly been considered in the context of gastruloids among factors affecting differentiation and tissue organization.
Endogenous extracellular matrix deposition creates a critical feedback loop that governs differentiation paths and structural complexity in scaffolded human cardiac gastruloids.
Spatial aOC patterning via ECM in gastruloids extends organoid models; leaves open cardiac developmental applications.
Amongst the various factors that affect differentiation and tissue organization, the autonomous deposition of extracellular matrix (ECM) has hardly been considered in the context of gastruloids. Using biofunctionalized colloidal particles as artificial organizing centers (aOCs), we patterned differentiation loci within 3D embryonic bodies. Our findings reveal that the spatial distribution of the aOCs induces various pattern organizations, mediated by endogenous deposition of ECM. We investigated how the interplay between meso-endoderm cell epithelial-to-mesenchymal transition, migration into germ layers, and the prolonged maintenance of local stem-cell niches orchestrates gastruloid structure and composition. These factors collectively regulate the complexity of emergent cardiac structures observed at later time points. This work uncovers a critical feedback loop between cell differentiation rates and endogenous ECM deposition patterns, which governs the differentiation paths in scaffolded cardiac gastruloids.
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Marchand et al. (2025) studied In vitro cardiac gastruloid development. Polarized distribution of artificial organizing centers (pol-aOC) vs. Isotropic distribution of artificial organizing centers (iso-aOC) was evaluated on Spatial organization and differentiation of meso-endoderm and epiblast cells. The spatial distribution of artificial organizing centers in human embryonic stem cell gastruloids controlled early differentiation patterns and tissue organization through endogenous extracellular matrix deposition.
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