Generating insulin-producing β-cells from human induced pluripotent stem cells is a promising cell replacement therapy for improving or curing insulin-dependent diabetes. The transplantation of end-stages differentiating cells into living hosts was demonstrated to improve β-cell maturation. Nevertheless, the cellular and molecular mechanisms outlining the transplanted cells’ response to the in vivo environment are still to be properly characterized. Here we use global proteomics and large-scale imaging techniques to demultiplex and filter the cellular processes and molecular signatures modulated by the immediate in vivo effect. We show that in vivo exposure swiftly confines in vitro generated human pancreatic progenitors to single hormone e...
Diabetes mellitus results in elevated blood glucose levels due to an insufficiency of the glucose lo...
Generating an unlimited source of human insulin-producing cells is a prerequisite to advance β cell ...
The maintenance of pancreatic islet architecture is crucial for proper β-cell function. We previousl...
Aim: The loss of insulin‐secreting β‐cells, ultimately characterizing most diabetes forms, demands t...
The past decade revealed that cell identity changes, such as dedifferentiation or transdifferentiati...
Transplantation of pancreatic islet cells derived from human pluripotent stem cells is a promising t...
Human pancreatic islets engrafted into immunodeficient mice serve as an important model for in vivo ...
Human pancreatic islets engrafted into immunodeficient mice serve as an important model for in vivo ...
Human islet transplantation could represent an attractive alternative to insulin injections for the ...
Wigger, Barovic and Brunner et al. perform a multidimensional analysis of islets from metabolically ...
Most research on human pancreatic islets is conducted on samples obtained from normoglycaemic or dis...
Type 1 diabetes (T1D) is characterized by the loss of insulin-producing β-cells in the pancreas. T1D...
Cell replacement therapies hold great therapeutic potential. Nevertheless, our knowledge of the mech...
Type 1 diabetes (T1D) is characterized by the loss of insulin-producing β-cells in the pancreas. T1D...
Success in islet-transplantation-based therapies for type 1 diabetes, coupled with a worldwide short...
Diabetes mellitus results in elevated blood glucose levels due to an insufficiency of the glucose lo...
Generating an unlimited source of human insulin-producing cells is a prerequisite to advance β cell ...
The maintenance of pancreatic islet architecture is crucial for proper β-cell function. We previousl...
Aim: The loss of insulin‐secreting β‐cells, ultimately characterizing most diabetes forms, demands t...
The past decade revealed that cell identity changes, such as dedifferentiation or transdifferentiati...
Transplantation of pancreatic islet cells derived from human pluripotent stem cells is a promising t...
Human pancreatic islets engrafted into immunodeficient mice serve as an important model for in vivo ...
Human pancreatic islets engrafted into immunodeficient mice serve as an important model for in vivo ...
Human islet transplantation could represent an attractive alternative to insulin injections for the ...
Wigger, Barovic and Brunner et al. perform a multidimensional analysis of islets from metabolically ...
Most research on human pancreatic islets is conducted on samples obtained from normoglycaemic or dis...
Type 1 diabetes (T1D) is characterized by the loss of insulin-producing β-cells in the pancreas. T1D...
Cell replacement therapies hold great therapeutic potential. Nevertheless, our knowledge of the mech...
Type 1 diabetes (T1D) is characterized by the loss of insulin-producing β-cells in the pancreas. T1D...
Success in islet-transplantation-based therapies for type 1 diabetes, coupled with a worldwide short...
Diabetes mellitus results in elevated blood glucose levels due to an insufficiency of the glucose lo...
Generating an unlimited source of human insulin-producing cells is a prerequisite to advance β cell ...
The maintenance of pancreatic islet architecture is crucial for proper β-cell function. We previousl...