AbstractMany organs are composed of epithelial tubes that transport vital fluids. Such tubular organs develop in many different ways and generate tubes of widely varying sizes and structures, but always with the apical epithelial surface lining the lumen. We describe recent progress in several diverse cell culture and genetic models of tube morphogenesis, which suggest apical membrane biogenesis, vesicle fusion, and secretion play central roles in tube formation and growth. We propose a unifying mechanism of tube morphogenesis that has been modified to create tube diversity and describe how defects in the tube size-sensing step can lead to polycystic kidney disease
Cells live in a highly curved and folded 3D microenvironment within the human body. Since epithelial...
In this issue of Developmental Cell, Rasmussen et al. (2008) investigate the morphogenesis of the Ca...
AbstractEpithelial tubes are a fundamental tissue across the metazoan phyla and provide an essential...
AbstractMany organs are composed of epithelial tubes that transport vital fluids. Such tubular organ...
AbstractFormation of tubes of the correct size and shape is essential for viability of most organism...
AbstractBranching morphogenesis involves the restructuring of epithelial tissues into complex and or...
Networks of epithelial tubes, such as the vertebrate lung, kidney and vascular system, enable transp...
AbstractThe nephrons of the vertebrate kidney originate from mesenchymal tissue that is recruited an...
In nature, epithelial tubes are vital structures in organ design and are required for transport of g...
The mammalian kidney may well be one of the most complex organs of postnatal life. Each adult human ...
AbstractIn the course of embryogenesis multicellular structures and organs are assembled from consti...
Item does not contain fulltextBuilding the complex architecture of tubular organs is a highly dynami...
During organ development, tubular organs often form from flat epithelial primordia. In the placodes ...
Multicellular tubes are structures ubiquitously found during development and in adult organisms. The...
During organ development, tubular organs often form from flat epithelial primordia. In the placodes ...
Cells live in a highly curved and folded 3D microenvironment within the human body. Since epithelial...
In this issue of Developmental Cell, Rasmussen et al. (2008) investigate the morphogenesis of the Ca...
AbstractEpithelial tubes are a fundamental tissue across the metazoan phyla and provide an essential...
AbstractMany organs are composed of epithelial tubes that transport vital fluids. Such tubular organ...
AbstractFormation of tubes of the correct size and shape is essential for viability of most organism...
AbstractBranching morphogenesis involves the restructuring of epithelial tissues into complex and or...
Networks of epithelial tubes, such as the vertebrate lung, kidney and vascular system, enable transp...
AbstractThe nephrons of the vertebrate kidney originate from mesenchymal tissue that is recruited an...
In nature, epithelial tubes are vital structures in organ design and are required for transport of g...
The mammalian kidney may well be one of the most complex organs of postnatal life. Each adult human ...
AbstractIn the course of embryogenesis multicellular structures and organs are assembled from consti...
Item does not contain fulltextBuilding the complex architecture of tubular organs is a highly dynami...
During organ development, tubular organs often form from flat epithelial primordia. In the placodes ...
Multicellular tubes are structures ubiquitously found during development and in adult organisms. The...
During organ development, tubular organs often form from flat epithelial primordia. In the placodes ...
Cells live in a highly curved and folded 3D microenvironment within the human body. Since epithelial...
In this issue of Developmental Cell, Rasmussen et al. (2008) investigate the morphogenesis of the Ca...
AbstractEpithelial tubes are a fundamental tissue across the metazoan phyla and provide an essential...