As animals develop, tissue bending contributes to shape the organs into complex three-dimensional structures. However, the architecture and packing of curved epithelia remains largely unknown. Here we show by means of mathematical modelling that cells in bent epithelia can undergo intercalations along the apico-basal axis. This phenomenon forces cells to have different neighbours in their basal and apical surfaces. As a consequence, epithelial cells adopt a novel shape that we term "scutoid". The detailed analysis of diverse tissues confirms that generation of apico-basal intercalations between cells is a common feature during morphogenesis. Using biophysical arguments, we propose that scutoids make possible the minimization of the tissue e...
Epithelia are ubiquitous tissues that display a large diversity of functions and forms, from totally...
Epithelial cell organization and the mechanical stability of tissues are closely related. In this co...
Sheets of cells called epithelia can curve into tubes in embryos. Modelling and in vivo observations...
Tesis doctoral en el programa de Biología integrada por la Universidad de Sevilla (Facultad de Biolo...
As animals develop, tissue bending contributes to shape the organs into complex three-dimensional st...
As animals develop, tissue bending contributes to shape the organs into complex three-dimensional st...
Resumen del póster presentado al 1st Joint Meeting of the French-Portuguese-Spanish Biochemical and ...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Apico-basal cell intercalations (scutoids) optimize packing and energy expenditure in curved epithel...
Epithelial cell organization and the mechanical stability of tissues are closely related. In this co...
Epithelial cell organization and the mechanical stability of tissues are closely related. In this co...
Understanding tissue and organ organization is key to unravel the genesis of pathology. Also, the st...
Epithelia are ubiquitous tissues that display a large diversity of functions and forms, from totally...
Epithelial cell organization and the mechanical stability of tissues are closely related. In this co...
Sheets of cells called epithelia can curve into tubes in embryos. Modelling and in vivo observations...
Tesis doctoral en el programa de Biología integrada por la Universidad de Sevilla (Facultad de Biolo...
As animals develop, tissue bending contributes to shape the organs into complex three-dimensional st...
As animals develop, tissue bending contributes to shape the organs into complex three-dimensional st...
Resumen del póster presentado al 1st Joint Meeting of the French-Portuguese-Spanish Biochemical and ...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Apico-basal cell intercalations (scutoids) optimize packing and energy expenditure in curved epithel...
Epithelial cell organization and the mechanical stability of tissues are closely related. In this co...
Epithelial cell organization and the mechanical stability of tissues are closely related. In this co...
Understanding tissue and organ organization is key to unravel the genesis of pathology. Also, the st...
Epithelia are ubiquitous tissues that display a large diversity of functions and forms, from totally...
Epithelial cell organization and the mechanical stability of tissues are closely related. In this co...
Sheets of cells called epithelia can curve into tubes in embryos. Modelling and in vivo observations...