AbstractA wide range of cellular developmental processes employ intercellular signaling via the Delta/Notch lateral inhibitory pathway to achieve stable spatial patterning. Recent genetic experiments have shown the importance of Delta/Notch lateral inhibition for regulating the number of tip cells in the tracheal primary branching of Drosophila. To examine the role of Delta/Notch regulation in the tip-cell selection, we analyzed a mathematical model of a simple lateral inhibitory system having input signals. Mathematical and numerical analyses revealed that the lateral inhibition did not amplify the signal difference between neighboring cells over the parameter ranges in which the spatial pattern of tip selection was realized. We also show ...
Developmental patterning requires juxtacrine signaling in order to tightly coordinate the fates of n...
International audienceINTRODUCTION: Spatial patterning in developing multicellular organisms relies ...
AbstractBackground: The Drosophila Notch protein is a receptor that controls cell fate during embryo...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
In many developing tissues, adjacent cells diverge in character so as to create a fine-grained patte...
Endothelial cells adopt unique cell fates during sprouting angiogenesis, differentiating into tip or...
Multicellular organisms are constituted by different kinds of cells which are arranged in a particul...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
International audienceDrosophila thoracic mechanosensory bristles originate from cells that are sing...
Developmental patterning requires juxtacrine signaling in order to tightly coordinate the fates of n...
Developmental patterning requires juxtacrine signaling in order to tightly coordinate the fates of n...
International audienceINTRODUCTION: Spatial patterning in developing multicellular organisms relies ...
AbstractBackground: The Drosophila Notch protein is a receptor that controls cell fate during embryo...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
In many developing tissues, adjacent cells diverge in character so as to create a fine-grained patte...
Endothelial cells adopt unique cell fates during sprouting angiogenesis, differentiating into tip or...
Multicellular organisms are constituted by different kinds of cells which are arranged in a particul...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
Cell fate determination by lateral inhibition via Notch/Delta signalling has been extensively studie...
International audienceDrosophila thoracic mechanosensory bristles originate from cells that are sing...
Developmental patterning requires juxtacrine signaling in order to tightly coordinate the fates of n...
Developmental patterning requires juxtacrine signaling in order to tightly coordinate the fates of n...
International audienceINTRODUCTION: Spatial patterning in developing multicellular organisms relies ...
AbstractBackground: The Drosophila Notch protein is a receptor that controls cell fate during embryo...