In vitro differentiation of human induced pluripotent stem cells (iPSCs) into beta cells represents an important cell source for diabetes research. Here, we fully characterized iPSC-derived beta cell function in vitro and in vivo in humanized mice. Using a 7-stage protocol, human iPSCs were differentiated into islet-like aggregates with a yield of insulin-positive beta cells comparable to that of human islets. The last three stages of differentiation were conducted with two different 3D culture systems, rotating suspension or static microwells. In the latter, homogeneously small-sized islet-like aggregates were obtained, while in rotating suspension size was heterogeneous and aggregates often clumped. In vitro function was assessed by gluco...
Clinical islet transplantation is a promising treatment for patients with type 1 diabetes. However, ...
BACKGROUND: Type 1 Diabetes Mellitus is caused by auto immune destruction of insulin producing beta ...
Type 1 diabetes is caused by the autoimmune destruction of insulin-producing β-cells. Even with adva...
Background and aims: Pancreatic β-cell failure is central in the pathogenesis of diabetes. In vitro ...
AIMS: New sources of insulin-secreting cells are strongly required for the cure of diabetes. Recent...
Introduction: To complement islet transplantation for type1 diabetic patients, cell-based therapy us...
BACKGROUND New sources of insulin-secreting cells are strongly required for the cure of diabetes. Re...
SummaryThe generation of insulin-producing pancreatic β cells from stem cells in vitro would provide...
Summary: By virtue of their capability to replicate and regenerate, human stem-cell-derived beta-lik...
We present here a robust and reliable protocol by which to differentiate pancreatic islet-like aggre...
BACKGROUND:Human pancreatic islet transplantation is a prospective curative treatment for diabetes. ...
Human pancreatic islet transplantation is a prospective curative treatment for diabetes. However, th...
Transplantation of pancreatic islet cells derived from human pluripotent stem cells is a promising t...
Diabetes mellitus is a high incidence disease that has increased rapidly in recent years. Many new t...
Transplantation of pancreatic islet cells derived from human pluripotent stem cells is a promising t...
Clinical islet transplantation is a promising treatment for patients with type 1 diabetes. However, ...
BACKGROUND: Type 1 Diabetes Mellitus is caused by auto immune destruction of insulin producing beta ...
Type 1 diabetes is caused by the autoimmune destruction of insulin-producing β-cells. Even with adva...
Background and aims: Pancreatic β-cell failure is central in the pathogenesis of diabetes. In vitro ...
AIMS: New sources of insulin-secreting cells are strongly required for the cure of diabetes. Recent...
Introduction: To complement islet transplantation for type1 diabetic patients, cell-based therapy us...
BACKGROUND New sources of insulin-secreting cells are strongly required for the cure of diabetes. Re...
SummaryThe generation of insulin-producing pancreatic β cells from stem cells in vitro would provide...
Summary: By virtue of their capability to replicate and regenerate, human stem-cell-derived beta-lik...
We present here a robust and reliable protocol by which to differentiate pancreatic islet-like aggre...
BACKGROUND:Human pancreatic islet transplantation is a prospective curative treatment for diabetes. ...
Human pancreatic islet transplantation is a prospective curative treatment for diabetes. However, th...
Transplantation of pancreatic islet cells derived from human pluripotent stem cells is a promising t...
Diabetes mellitus is a high incidence disease that has increased rapidly in recent years. Many new t...
Transplantation of pancreatic islet cells derived from human pluripotent stem cells is a promising t...
Clinical islet transplantation is a promising treatment for patients with type 1 diabetes. However, ...
BACKGROUND: Type 1 Diabetes Mellitus is caused by auto immune destruction of insulin producing beta ...
Type 1 diabetes is caused by the autoimmune destruction of insulin-producing β-cells. Even with adva...