Cells in growing tissues receive both biochemical and physical cues from their microenvironment. Growing evidence has shown that mechanical signals are fundamental regulators of cell behavior. However, how physical properties of the microenvironment are transduced into critical cell behaviors, such as proliferation, progenitor maintenance, or differentiation during development, is still poorly understood. The transcriptional co-activators YAP/TAZ shuttle between the cytoplasm and the nucleus in response to multiple inputs and have emerged as important regulators of tissue growth and regeneration. YAP/TAZ sense and transduce physical cues, such as those from the extracellular matrix or the actomyosin cytoskeleton, to regulate gene expression...
Notch signaling forms an evolutionarily conserved juxtacrine pathway crucial for cellular developmen...
The Notch signalling pathway plays fundamental roles in diverse developmental processes in metazoans...
The physical and mechanical properties of the cellular microenvironment regulate cell shape and can ...
Cells in growing tissues receive both biochemical and physical cues from their microenvironment. Gro...
The penultimate effectors of the Hippo signaling pathways YAP and TAZ, are transcriptional co-activa...
Notch signaling has been shown over the past few decades to play fundamental roles in a plethora of ...
The Hippo pathway is a potent regulator of cellular proliferation, differentiation, and tissue homeo...
Metazoan embryonic development requires a complex interplay of morphological processes coordinated ...
Notch receptor signaling controls developmental cell fates in a cell-context dependent manner. Altho...
A central question in developmental biology is how a single cell, the zygote, divides and differenti...
Notch receptor signaling controls developmental cell fates in a cell-context dependent manner. Altho...
AbstractThe Notch pathway plays a key role in the formation of many tissues and cell types in Metazo...
International audienceNOTCH signalling is an evolutionarily conserved pathway involved in intercellu...
Cells perceive their microenvironment through chemical and physical cues. However, how the mechanica...
Recreating functional tissues through bioengineering strategies requires steering of complex cell f...
Notch signaling forms an evolutionarily conserved juxtacrine pathway crucial for cellular developmen...
The Notch signalling pathway plays fundamental roles in diverse developmental processes in metazoans...
The physical and mechanical properties of the cellular microenvironment regulate cell shape and can ...
Cells in growing tissues receive both biochemical and physical cues from their microenvironment. Gro...
The penultimate effectors of the Hippo signaling pathways YAP and TAZ, are transcriptional co-activa...
Notch signaling has been shown over the past few decades to play fundamental roles in a plethora of ...
The Hippo pathway is a potent regulator of cellular proliferation, differentiation, and tissue homeo...
Metazoan embryonic development requires a complex interplay of morphological processes coordinated ...
Notch receptor signaling controls developmental cell fates in a cell-context dependent manner. Altho...
A central question in developmental biology is how a single cell, the zygote, divides and differenti...
Notch receptor signaling controls developmental cell fates in a cell-context dependent manner. Altho...
AbstractThe Notch pathway plays a key role in the formation of many tissues and cell types in Metazo...
International audienceNOTCH signalling is an evolutionarily conserved pathway involved in intercellu...
Cells perceive their microenvironment through chemical and physical cues. However, how the mechanica...
Recreating functional tissues through bioengineering strategies requires steering of complex cell f...
Notch signaling forms an evolutionarily conserved juxtacrine pathway crucial for cellular developmen...
The Notch signalling pathway plays fundamental roles in diverse developmental processes in metazoans...
The physical and mechanical properties of the cellular microenvironment regulate cell shape and can ...