AbstractDuring development a network of transcription factors functions to differentiate foregut cells into pancreatic endocrine cells. Differentiation of appropriate numbers of each hormone-expressing endocrine cell type is essential for the normal development of the pancreas and ultimately for effective maintenance of blood glucose levels. A fuller understanding of the details of endocrine cell differentiation may contribute to development of cell replacement therapies to treat diabetes. In this study, by using morpholino and gRNA/Cas9 mediated knockdown we establish that differential levels of the basic-helix loop helix (bHLH) transcription factor Neurod are required for the differentiation of distinct endocrine cell types in developing ...
AbstractRecent zebrafish studies have shown that the late appearing pancreatic endocrine cells are d...
SummaryPluripotent embryonic cells become progressively lineage restricted during development in a p...
AbstractTo contribute to devise successful beta-cell differentiation strategies for the cure of Type...
AbstractDuring development a network of transcription factors functions to differentiate foregut cel...
During pancreatic development, transcription factor cascades gradually commit precursor populations ...
peer reviewedBackground NEUROG3 is a key regulator of pancreatic endocrine cell differentiation i...
AbstractDuring pancreas development, endocrine and exocrine cells arise from a common multipotent pr...
AbstractDuring mouse pancreas development, the transient expression of Neurogenin3 (Neurog3) in unco...
AbstractThe different cell types of the vertebrate pancreas arise asynchronously during organogenesi...
Differentiation of early gut endoderm cells into the endocrine cells forming the pancreatic islets o...
AbstractMammalian studies have implicated important roles for the basic helix–loop–helix transcripti...
SummaryNeuroD, a transactivator of the insulin gene, is critical for development of the endocrine pa...
Diabetes is a metabolic disease that involves the death or dysfunction of the insulin-secreting β ce...
AbstractAlthough many of the genes that regulate development of the endocrine pancreas have been ide...
Diabetes mellitus affects nearly 300 million people in the world. The development of diabetes is cau...
AbstractRecent zebrafish studies have shown that the late appearing pancreatic endocrine cells are d...
SummaryPluripotent embryonic cells become progressively lineage restricted during development in a p...
AbstractTo contribute to devise successful beta-cell differentiation strategies for the cure of Type...
AbstractDuring development a network of transcription factors functions to differentiate foregut cel...
During pancreatic development, transcription factor cascades gradually commit precursor populations ...
peer reviewedBackground NEUROG3 is a key regulator of pancreatic endocrine cell differentiation i...
AbstractDuring pancreas development, endocrine and exocrine cells arise from a common multipotent pr...
AbstractDuring mouse pancreas development, the transient expression of Neurogenin3 (Neurog3) in unco...
AbstractThe different cell types of the vertebrate pancreas arise asynchronously during organogenesi...
Differentiation of early gut endoderm cells into the endocrine cells forming the pancreatic islets o...
AbstractMammalian studies have implicated important roles for the basic helix–loop–helix transcripti...
SummaryNeuroD, a transactivator of the insulin gene, is critical for development of the endocrine pa...
Diabetes is a metabolic disease that involves the death or dysfunction of the insulin-secreting β ce...
AbstractAlthough many of the genes that regulate development of the endocrine pancreas have been ide...
Diabetes mellitus affects nearly 300 million people in the world. The development of diabetes is cau...
AbstractRecent zebrafish studies have shown that the late appearing pancreatic endocrine cells are d...
SummaryPluripotent embryonic cells become progressively lineage restricted during development in a p...
AbstractTo contribute to devise successful beta-cell differentiation strategies for the cure of Type...