bioRxiv · 10.1101/537985
Fracking and Ostwald ripening position the lumen of the mouse blastocyst
Abstract
During mouse preimplantation development, the formation of the blastocoel, a fluid-filled lumen, breaks the radial symmetry of the blastocyst. What controls the formation and positioning of this basolateral lumen remains obscure. We find that accumulation of pressurized fluid fractures cell-cell contacts into hundreds of micron-size lumens. Microlumens eventually discharge their volumes into a single dominant lumen, which we model as a process akin to Ostwald ripening, underlying the coarsening of foams. Using chimeric mutant embryos, we tune the tracking of cell-cell contacts and steer the coarsening of microlumens, allowing us to successfully manipulate the final position of the lumen. We conclude that hydraulic fracture of cell-cell contacts followed by directed coarsening of microlumens sets the first axis of symmetry of the mouse embryo.
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Dumortier, J., Le Verge-Serandour, M., Tortorelli, A.-F., Mielke, A., de Plater, L., Turlier, H., Maitre, J.-L.. 2019-02-01. Fracking and Ostwald ripening position the lumen of the mouse blastocyst. https://doi.org/10.1101/537985
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