In epithelial cells, the polarized orientation of the apical-basal axis determines the position of the apical lumen and, thereby, the collective tubular tissue architecture. From recent studies employing 3D cell cultures, animal models, and patient material, a model is emerging in which the orientation and positioning of the apical surface and lumen is controlled by the relationships between the extracellular matrix (ECM), Rho family GTPase signaling, recycling endosome dynamics, and cell division. Different epithelial cells adjust these relationships to establish their specific cell polarity orientation and lumen positioning, according to physiologic need. We provide an overview of the molecular mechanisms required to construct and orient ...
Epithelial cells differentiate and polarize to build complete epithelial organs during development. ...
The establishment of an apical-basal axis of polarity is essential for the organization and function...
Formation of apical compartments underlies the morphogenesis of most epithelial organs during develo...
In epithelial cells, the polarized orientation of the apical-basal axis determines the position of t...
In epithelial cells, the polarized orientation of the apical-basal axis determines the position of t...
In epithelial cells, the polarized orientation of the apical-basal axis determines the position of t...
In epithelial cells, the polarized orientation of the apical-basal axis determines the position of t...
In epithelial cells, the polarized orientation of the apical-basal axis determines the position of t...
In epithelial cells, the polarized orientation of the apical–basal axis determines the position of t...
SummaryThe formation of epithelial tissues containing lumens requires not only the apical-basolatera...
SummaryThe formation of epithelial tissues containing lumens requires not only the apical-basolatera...
The formation of epithelial tissues containing lumens requires not only the apical-basolateral polar...
The formation of epithelial tissues containing lumens requires not only the apical-basolateral polar...
The formation of epithelial tissues containing lumens requires not only the apical-basolateral polar...
The de novo formation of secretory lumens plays an important role during organogenesis. It involves ...
Epithelial cells differentiate and polarize to build complete epithelial organs during development. ...
The establishment of an apical-basal axis of polarity is essential for the organization and function...
Formation of apical compartments underlies the morphogenesis of most epithelial organs during develo...
In epithelial cells, the polarized orientation of the apical-basal axis determines the position of t...
In epithelial cells, the polarized orientation of the apical-basal axis determines the position of t...
In epithelial cells, the polarized orientation of the apical-basal axis determines the position of t...
In epithelial cells, the polarized orientation of the apical-basal axis determines the position of t...
In epithelial cells, the polarized orientation of the apical-basal axis determines the position of t...
In epithelial cells, the polarized orientation of the apical–basal axis determines the position of t...
SummaryThe formation of epithelial tissues containing lumens requires not only the apical-basolatera...
SummaryThe formation of epithelial tissues containing lumens requires not only the apical-basolatera...
The formation of epithelial tissues containing lumens requires not only the apical-basolateral polar...
The formation of epithelial tissues containing lumens requires not only the apical-basolateral polar...
The formation of epithelial tissues containing lumens requires not only the apical-basolateral polar...
The de novo formation of secretory lumens plays an important role during organogenesis. It involves ...
Epithelial cells differentiate and polarize to build complete epithelial organs during development. ...
The establishment of an apical-basal axis of polarity is essential for the organization and function...
Formation of apical compartments underlies the morphogenesis of most epithelial organs during develo...