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Publication : Engineered Tissue Folding by Mechanical Compaction of the Mesenchyme.

First Author  Hughes AJ Year  2018
Journal  Dev Cell Volume  44
Issue  2 Pages  165-178.e6
PubMed ID  29290586 Mgi Jnum  J:257922
Mgi Id  MGI:6116745 Doi  10.1016/j.devcel.2017.12.004
Citation  Hughes AJ, et al. (2018) Engineered Tissue Folding by Mechanical Compaction of the Mesenchyme. Dev Cell 44(2):165-178.e6
abstractText  Many tissues fold into complex shapes during development. Controlling this process in vitro would represent an important advance for tissue engineering. We use embryonic tissue explants, finite element modeling, and 3D cell-patterning techniques to show that mechanical compaction of the extracellular matrix during mesenchymal condensation is sufficient to drive tissue folding along programmed trajectories. The process requires cell contractility, generates strains at tissue interfaces, and causes patterns of collagen alignment around and between condensates. Aligned collagen fibers support elevated tensions that promote the folding of interfaces along paths that can be predicted by modeling. We demonstrate the robustness and versatility of this strategy for sculpting tissue interfaces by directing the morphogenesis of a variety of folded tissue forms from patterns of mesenchymal condensates. These studies provide insight into the active mechanical properties of the embryonic mesenchyme and establish engineering strategies for more robustly directing tissue morphogenesis ex vivo.
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