A fundamental question in development is how cells assemble to form a tubular network during organ formation. In glandular organs, tubulogenesis is a multistep process requiring coordinated proliferation, polarization and reorganization of epithelial cells to form a lumen, and lumen expansion. Although it is clear that epithelial cells possess an intrinsic ability to organize into polarized structures, the mechanisms coordinating morphogenetic processes during tubulogenesis are poorly understood. Here, we demonstrate that parasympathetic nerves regulate tubulogenesis in the developing salivary gland. We show that vasoactive intestinal peptide (VIP) secreted by the innervating ganglia promotes ductal growth, leads to the formation of a conti...
Tubulogenesis is fundamental to the development of many epithelial organs. Although lumen formation ...
Tube morphogenesis is essential for internal-organ development, yet the mechanisms regulating tube s...
The formation of an epithelial tube is a fundamental process for organogenesis. During embryonic sa...
SummaryA fundamental question in development is how cells assemble to form a tubular network during ...
Biological tubes serve as the body’s plumbing system, transporting fluids and gases throughout secre...
SummaryParasympathetic innervation is critical for submandibular gland (SMG) development and regener...
Parasympathetic innervation is critical for submandibular gland (SMG) development and regeneration. ...
A universally conserved process called branching morphogenesis generates the final tree-like structu...
AbstractBranching morphogenesis is a molecularly conserved mechanism that is adopted by several orga...
Parasympathetic nerves are a vital component of the progenitor cell niche during development, mainta...
Mammalian salivary glands synthesize and secrete saliva via a vast interconnected network of epithel...
Lumen formation of salivary glands has been investigated using in vivo or ex vivo rudiment culture m...
SummaryThe formation of tubular structures from epithelial sheets is a key process of organ formatio...
Lumen formation of salivary glands has been investigated using in vivo or ex vivo rudiment culture m...
ABSTRACT Complex organ development depends on single lumen formation and its expansion duri...
Tubulogenesis is fundamental to the development of many epithelial organs. Although lumen formation ...
Tube morphogenesis is essential for internal-organ development, yet the mechanisms regulating tube s...
The formation of an epithelial tube is a fundamental process for organogenesis. During embryonic sa...
SummaryA fundamental question in development is how cells assemble to form a tubular network during ...
Biological tubes serve as the body’s plumbing system, transporting fluids and gases throughout secre...
SummaryParasympathetic innervation is critical for submandibular gland (SMG) development and regener...
Parasympathetic innervation is critical for submandibular gland (SMG) development and regeneration. ...
A universally conserved process called branching morphogenesis generates the final tree-like structu...
AbstractBranching morphogenesis is a molecularly conserved mechanism that is adopted by several orga...
Parasympathetic nerves are a vital component of the progenitor cell niche during development, mainta...
Mammalian salivary glands synthesize and secrete saliva via a vast interconnected network of epithel...
Lumen formation of salivary glands has been investigated using in vivo or ex vivo rudiment culture m...
SummaryThe formation of tubular structures from epithelial sheets is a key process of organ formatio...
Lumen formation of salivary glands has been investigated using in vivo or ex vivo rudiment culture m...
ABSTRACT Complex organ development depends on single lumen formation and its expansion duri...
Tubulogenesis is fundamental to the development of many epithelial organs. Although lumen formation ...
Tube morphogenesis is essential for internal-organ development, yet the mechanisms regulating tube s...
The formation of an epithelial tube is a fundamental process for organogenesis. During embryonic sa...