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To define genetic pathways that regulate development of the endocrine pancreas, we generated transcriptional profiles of enriched cells isolated from four biologically significant stages of endocrine pancreas development: endoderm before pancreas specification, early pancreatic progenitor cells, end...
ORGANISM(S): Mus musculus 
RNA-seq of sorted pancreatic endocrine progenitor cells
Bicaudal C1 KO embryonic pancreas develops cysts and has less endocrine progenitors after E14.5 (14.5 days after fertilization), while no defect is observed at E13.5. Bicaudal C1 is an RNA-binding protein. To understand the molecular mechanisms leading to both phenotypes, the mRNA expression profile...
ORGANISM(S): Mus musculus 
Repression of Progenitor Programs Safeguards Pancreatic Endocrine Cell Identity
This experiment used RNA-Seq technology to explore gene expression in mouse Insm1^GFP/Pdx1^CFP HIGH [het/het] FACS sorted pancreatic cells (pre-beta cells) and Insm1^GFP/Pdx1^CFP LOW [het/het] cells (other endocrine progenitors) at E15.5 and E18.5. Comparison of Insm1 +/Pdx HIGH and Insm1 +/Pdx LO...
ORGANISM(S): Mus musculus 
Hormone-producing cells in the pancreas and intestine regulate whole-body metabolism and are key targets for causal therapies for diabetes and obesity. A deeper understanding of endocrine lineage formation (endocrinogenesis) in these organs is essential to elucidate disease mechanisms and develop im...
ORGANISM(S): Mus musculus (Mouse) 
2026-08-25 | PXD076279 | Pride
deBack2012 - Lineage Specification in Pancreas Development This model of two neighbouring pancreas precursor cells, describes the exocrine versus endocrine lineage specification process. To account for the tissue scale patterns, this couplet model has been extended to hundreds of c...
2024-09-02 | BIOMD0000000435 | BioModels
The goal of this study was to examine genetic networks that control endocrine cell type specification and differentiation. RNA-Seq technology was used to explore the gene expression profiles of pancreatic endocrine progenitor cells (at E10.5 and E15.5), impaired endocrine progenitor cells (at E10.5 ...
ORGANISM(S): Mus musculus 
Sequential progenitor states mark the generation of pancreatic endocrine lineages in mice and humans
This experiment used RNA-Seq technology to explore gene expression in mouse Ngn3^GFP/+ [het] FACS sorted pancreatic cells at E15.5 (commited endocrine progenitor cells) and in Ngn3^GFP/GFP [null] at E15.5 (defective endocrine progenitor cells). This experiment is designed to understand the gene expr...
ORGANISM(S): Mus musculus 
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