The morphological stability of biological tubes is crucial for the efficient circulation of fluids and gases. Failure of this stability causes irregularly shaped tubes found in multiple pathological conditions. Here, we report that Drosophila mutants of the ESCRT III component Shrub/Vps32 exhibit a strikingly elongated sinusoidal tube phenotype. This is caused by excessive apical membrane synthesis accompanied by the ectopic accumulation and overactivation of Crumbs in swollen endosomes. Furthermore, we demonstrate that the apical extracellular matrix (aECM) of the tracheal tube is a viscoelastic material coupled with the apical membrane. We present a simple mechanical model in which aECM elasticity, apical membrane growth, and their intera...
In nature, epithelial tubes are vital structures in organ design and are required for transport of g...
© 2018 Olivares-Castiñeira, Llimargas.The control of the size of internal tubular organs, such as th...
Most organs and glands are composed of interconnected networks of tubes. Tubes carryout many importa...
SummaryThe morphological stability of biological tubes is crucial for the efficient circulation of f...
International audienceThe morphological stability of biological tubes is crucial for the efficient c...
SummaryThe morphological stability of biological tubes is crucial for the efficient circulation of f...
Biological tubes are fundamental units of most metazoan organs. Their defective morphogenesis can ca...
Biological tubes adopt a variety of shapes to carry out their functions. In addition to multicellula...
Biological tubes adopt a variety of shapes to carry out their functions. In addition to multicellula...
SummaryEpithelial tubes are found in many vital organs and require uniform and correct tube diameter...
The control of the size of internal tubular organs, such as the lungs or vascular system, is critica...
SummaryEpithelial tubes in developing organs, such as mammalian lungs and insect tracheae, need to e...
SummaryRegulation of epithelial tube size is critical for organ function. However, the mechanisms of...
The control of the size of internal tubular organs, such as the lungs or vascular system, is critica...
New work shows that a dynamic and highly patterned apical extracellular matrix regulates epithelial ...
In nature, epithelial tubes are vital structures in organ design and are required for transport of g...
© 2018 Olivares-Castiñeira, Llimargas.The control of the size of internal tubular organs, such as th...
Most organs and glands are composed of interconnected networks of tubes. Tubes carryout many importa...
SummaryThe morphological stability of biological tubes is crucial for the efficient circulation of f...
International audienceThe morphological stability of biological tubes is crucial for the efficient c...
SummaryThe morphological stability of biological tubes is crucial for the efficient circulation of f...
Biological tubes are fundamental units of most metazoan organs. Their defective morphogenesis can ca...
Biological tubes adopt a variety of shapes to carry out their functions. In addition to multicellula...
Biological tubes adopt a variety of shapes to carry out their functions. In addition to multicellula...
SummaryEpithelial tubes are found in many vital organs and require uniform and correct tube diameter...
The control of the size of internal tubular organs, such as the lungs or vascular system, is critica...
SummaryEpithelial tubes in developing organs, such as mammalian lungs and insect tracheae, need to e...
SummaryRegulation of epithelial tube size is critical for organ function. However, the mechanisms of...
The control of the size of internal tubular organs, such as the lungs or vascular system, is critica...
New work shows that a dynamic and highly patterned apical extracellular matrix regulates epithelial ...
In nature, epithelial tubes are vital structures in organ design and are required for transport of g...
© 2018 Olivares-Castiñeira, Llimargas.The control of the size of internal tubular organs, such as th...
Most organs and glands are composed of interconnected networks of tubes. Tubes carryout many importa...