OBJECTIVE: Islets of Langerhans contain heterogeneous populations of insulin-producing β-cells. Surface markers and respective antibodies for isolation, tracking, and analysis are urgently needed to study β-cell heterogeneity and explore the mechanisms to harness the regenerative potential of immature β-cells. METHODS: We performed single-cell mRNA profiling of early postnatal mouse islets and re-analyzed several single-cell mRNA sequencing datasets from mouse and human pancreas and islets. We used mouse primary islets, iPSC-derived endocrine cells, Min6 insulinoma, and human EndoC-βH1 β-cell lines and performed FAC sorting, Western blotting, and imaging to support and complement the findings from the data analyses. RESULTS: We found that a...
Context: Diabetes is associated with a deficit of insulin-producing β-cells. Animal studies show tha...
Diabetes is characterized by the loss of functional insulin-producing β-cells. Thus, one axis of res...
Summary: Human embryonic stem cells (hESCs) are a potential unlimited source of insulin-producing β ...
Objective: Islets of Langerhans contain heterogeneous populations of insulin-producing β-cells. Surf...
Objective: Pancreatic islets of Langerhans secrete hormones to regulate systemic glucose levels. Eme...
Directed differentiation of stem cells offers a scalable solution to the need for human cell models ...
Following differentiation during fetal development, β cells further adapt to their postnatal role th...
Islet β-cell biomarkers can reflect changes in the number and function of islet β-cells in the predi...
BackgroundBlood glucose levels are tightly controlled by the coordinated actions of hormone-producin...
AbstractWe have developed a novel panel of cell-surface markers for the isolation and study of all m...
Islet β-cell biomarkers can reflect changes in the number and function of islet β-cells in the predi...
Islet β-cell biomarkers can reflect changes in the number and function of islet β-cells in the predi...
Type 1 diabetes (T1D) is characterized by the loss of insulin-producing β-cells in the pancreas. T1D...
Diabetes mellitus is amongst the leading causes of morbidity and mortality worldwide. Insulin-produc...
Type 1 diabetes (T1D) is characterized by the loss of insulin-producing β-cells in the pancreas. T1D...
Context: Diabetes is associated with a deficit of insulin-producing β-cells. Animal studies show tha...
Diabetes is characterized by the loss of functional insulin-producing β-cells. Thus, one axis of res...
Summary: Human embryonic stem cells (hESCs) are a potential unlimited source of insulin-producing β ...
Objective: Islets of Langerhans contain heterogeneous populations of insulin-producing β-cells. Surf...
Objective: Pancreatic islets of Langerhans secrete hormones to regulate systemic glucose levels. Eme...
Directed differentiation of stem cells offers a scalable solution to the need for human cell models ...
Following differentiation during fetal development, β cells further adapt to their postnatal role th...
Islet β-cell biomarkers can reflect changes in the number and function of islet β-cells in the predi...
BackgroundBlood glucose levels are tightly controlled by the coordinated actions of hormone-producin...
AbstractWe have developed a novel panel of cell-surface markers for the isolation and study of all m...
Islet β-cell biomarkers can reflect changes in the number and function of islet β-cells in the predi...
Islet β-cell biomarkers can reflect changes in the number and function of islet β-cells in the predi...
Type 1 diabetes (T1D) is characterized by the loss of insulin-producing β-cells in the pancreas. T1D...
Diabetes mellitus is amongst the leading causes of morbidity and mortality worldwide. Insulin-produc...
Type 1 diabetes (T1D) is characterized by the loss of insulin-producing β-cells in the pancreas. T1D...
Context: Diabetes is associated with a deficit of insulin-producing β-cells. Animal studies show tha...
Diabetes is characterized by the loss of functional insulin-producing β-cells. Thus, one axis of res...
Summary: Human embryonic stem cells (hESCs) are a potential unlimited source of insulin-producing β ...