Stem-cell-derived tissues could transform disease research and therapy, yet most methods generate functionally immature products. We investigate how human pluripotent stem cells (hPSCs) differentiate into pancreatic islets in vitro by profiling DNA methylation, chromatin accessibility, and histone modification changes. We find that enhancer potential is reset upon lineage commitment and show how pervasive epigenetic priming steers endocrine cell fates. Modeling islet differentiation and maturation regulatory circuits reveals genes critical for generating endocrine cells and identifies circadian control as limiting for in vitro islet function. Entrainment to circadian feeding/fasting cycles triggers islet metabolic maturation by inducing cyc...
Generating insulin-producing β-cells from human induced pluripotent stem cells is a promising cell r...
Intensive efforts are focused on identifying regulators of human pancreatic islet cell growth and ma...
Evidence continues to emerge detailing a fine-tuning of the regulation of metabolic processes and en...
Transplantation of pancreatic islet cells derived from human pluripotent stem cells is a promising t...
Aims/hypothesis: Following on from the emerging importance of the pancreas circadian clock on islet ...
Development of cell replacement therapies in diabetes requires understanding of the molecular underp...
Circadian clocks in pancreatic islets participate in the regulation of glucose homeostasis. Here we ...
SummaryHuman induced pluripotent stem cells (HiPSCs) appear to be highly similar to human embryonic ...
Abstract Background aims Induced pluripotent stem cells (iPSCs) have the capacity to generate β c...
We present here a robust and reliable protocol by which to differentiate pancreatic islet-like aggre...
Pancreatic islets play an essential role in regulating blood glucose level. Although the molecular p...
SummaryEmbryonic development is characterized by dynamic changes in gene expression, yet the role of...
Glucose-induced insulin secretion, a hallmark of mature β-cells, is achieved after birth and is prec...
Data de publicació electrònica: 03-03-2022Transplantation of pancreatic islet cells derived from hum...
Human multipotent stromal cells (hMSC) can induce islet regeneration after transplantation via the s...
Generating insulin-producing β-cells from human induced pluripotent stem cells is a promising cell r...
Intensive efforts are focused on identifying regulators of human pancreatic islet cell growth and ma...
Evidence continues to emerge detailing a fine-tuning of the regulation of metabolic processes and en...
Transplantation of pancreatic islet cells derived from human pluripotent stem cells is a promising t...
Aims/hypothesis: Following on from the emerging importance of the pancreas circadian clock on islet ...
Development of cell replacement therapies in diabetes requires understanding of the molecular underp...
Circadian clocks in pancreatic islets participate in the regulation of glucose homeostasis. Here we ...
SummaryHuman induced pluripotent stem cells (HiPSCs) appear to be highly similar to human embryonic ...
Abstract Background aims Induced pluripotent stem cells (iPSCs) have the capacity to generate β c...
We present here a robust and reliable protocol by which to differentiate pancreatic islet-like aggre...
Pancreatic islets play an essential role in regulating blood glucose level. Although the molecular p...
SummaryEmbryonic development is characterized by dynamic changes in gene expression, yet the role of...
Glucose-induced insulin secretion, a hallmark of mature β-cells, is achieved after birth and is prec...
Data de publicació electrònica: 03-03-2022Transplantation of pancreatic islet cells derived from hum...
Human multipotent stromal cells (hMSC) can induce islet regeneration after transplantation via the s...
Generating insulin-producing β-cells from human induced pluripotent stem cells is a promising cell r...
Intensive efforts are focused on identifying regulators of human pancreatic islet cell growth and ma...
Evidence continues to emerge detailing a fine-tuning of the regulation of metabolic processes and en...