Abstract Mechanical constraints have a high impact on development processes, and there is a need for new tools to investigate the role of mechanosensitive pathways in tissue reorganization during development. We present here experiments where embryonic cell aggregates are aspired through constrictions in microfluidic channels, generating highly heterogeneous flows and high cell deformations that can be imaged using two-photon microscopy. This approach provides a way to measure in situ local viscoelastic properties of 3D tissues and connect them to intracellular and intercellular events such as cell shape changes and cell rearrangements. Perspectives include applications on organoids to investigate and quantify rheological properties of tiss...
During embryogenesis tissue layers undergo morphogenetic flow rearranging and folding into specific ...
The mechanical properties of biological tissues are key to the regulation of their physical integrit...
International audienceCell-generated forces produce a variety of tissue movements and tissue shape c...
Mechanical constraints have a high impact on development processes, and there is a need for new tool...
4 pagesInternational audienceMechanical contraints play a key role in tissue morphogenesis. We propo...
Developing embryos create complexity by expressing genes to coordinate movement, which generates mec...
During development, cell-generated forces induce tissue-scale deformations to shape the organism [1,...
The quantification of cellular mechanical properties is of tremendous interest in biology and medici...
AbstractCells are not directly accessible in vivo and therefore their mechanical properties cannot b...
The process of a single cell evolving into a complex organism results from a series of coordinated m...
Cell-generated mechanical forces play a critical role during tissue morphogenesis and organ formatio...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
To investigate the role of mechanical constraints in morphogenesis and development, we develop a pip...
The mechanical properties of the cellular microenvironment and their spatiotemporal variations are t...
Embryonic development is a complex phenomenon where embryos construct three-dimensional organ-struct...
During embryogenesis tissue layers undergo morphogenetic flow rearranging and folding into specific ...
The mechanical properties of biological tissues are key to the regulation of their physical integrit...
International audienceCell-generated forces produce a variety of tissue movements and tissue shape c...
Mechanical constraints have a high impact on development processes, and there is a need for new tool...
4 pagesInternational audienceMechanical contraints play a key role in tissue morphogenesis. We propo...
Developing embryos create complexity by expressing genes to coordinate movement, which generates mec...
During development, cell-generated forces induce tissue-scale deformations to shape the organism [1,...
The quantification of cellular mechanical properties is of tremendous interest in biology and medici...
AbstractCells are not directly accessible in vivo and therefore their mechanical properties cannot b...
The process of a single cell evolving into a complex organism results from a series of coordinated m...
Cell-generated mechanical forces play a critical role during tissue morphogenesis and organ formatio...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
To investigate the role of mechanical constraints in morphogenesis and development, we develop a pip...
The mechanical properties of the cellular microenvironment and their spatiotemporal variations are t...
Embryonic development is a complex phenomenon where embryos construct three-dimensional organ-struct...
During embryogenesis tissue layers undergo morphogenetic flow rearranging and folding into specific ...
The mechanical properties of biological tissues are key to the regulation of their physical integrit...
International audienceCell-generated forces produce a variety of tissue movements and tissue shape c...