Development of a human embryonic stem cell (hESC)-based therapy for type 1 diabetes will require the translation of proof-of-principle concepts into a scalable, controlled, and regulated cell manufacturing process. We have previously demonstrated that hESC can be directed to differentiate into pancreatic progenitors that mature into functional glucose-responsive, insulin-secreting cells in vivo. In this study we describe hESC expansion and banking methods and a suspension-based differentiation system, which together underpin an integrated scalable manufacturing process for producing pancreatic progenitors. This system has been optimized for the CyT49 cell line. Accordingly, qualified large-scale single-cell master and working cGMP cell bank...
Embryonic pancreatic bud cells, the earliest pancreas-committed cells, generated from human embryoni...
AbstractEmbryonic pancreatic bud cells, the earliest pancreas-committed cells, generated from human ...
<div><p>Human embryonic stem cells (hESCs) are pluripotent and capable of undergoing multilineage di...
<div><p>Development of a human embryonic stem cell (hESC)-based therapy for type 1 diabetes will req...
Development of a human embryonic stem cell (hESC)-based therapy for type 1 diabetes will require the...
<p>Scaled and high-density single-cell master (MCB) and working cell banks (WCB) of CyT49 cells were...
Abstract Diabetes is a debilitating disease characterized by high blood glucose levels. The global p...
Human pluripotent stem cells represent a potentially unlimited source of functional pancreatic endoc...
Human pluripotent stem cells can in principle be used as a source of any differentiated cell type fo...
AbstractThe potential of pluripotent human cells, such as human embryonic stem cells (hESCs) and ind...
Diabetes is a chronic debilitating disease that results from in-sufficient production of insulin fro...
Summary: By virtue of their capability to replicate and regenerate, human stem-cell-derived beta-lik...
SummaryThe generation of insulin-producing pancreatic β cells from stem cells in vitro would provide...
Diabetes is a chronic debilitating disease that results from in-sufficient production of insulin fro...
Efficiently obtaining functional pancreatic islet cells derived from human embryonic stem (hES) cell...
Embryonic pancreatic bud cells, the earliest pancreas-committed cells, generated from human embryoni...
AbstractEmbryonic pancreatic bud cells, the earliest pancreas-committed cells, generated from human ...
<div><p>Human embryonic stem cells (hESCs) are pluripotent and capable of undergoing multilineage di...
<div><p>Development of a human embryonic stem cell (hESC)-based therapy for type 1 diabetes will req...
Development of a human embryonic stem cell (hESC)-based therapy for type 1 diabetes will require the...
<p>Scaled and high-density single-cell master (MCB) and working cell banks (WCB) of CyT49 cells were...
Abstract Diabetes is a debilitating disease characterized by high blood glucose levels. The global p...
Human pluripotent stem cells represent a potentially unlimited source of functional pancreatic endoc...
Human pluripotent stem cells can in principle be used as a source of any differentiated cell type fo...
AbstractThe potential of pluripotent human cells, such as human embryonic stem cells (hESCs) and ind...
Diabetes is a chronic debilitating disease that results from in-sufficient production of insulin fro...
Summary: By virtue of their capability to replicate and regenerate, human stem-cell-derived beta-lik...
SummaryThe generation of insulin-producing pancreatic β cells from stem cells in vitro would provide...
Diabetes is a chronic debilitating disease that results from in-sufficient production of insulin fro...
Efficiently obtaining functional pancreatic islet cells derived from human embryonic stem (hES) cell...
Embryonic pancreatic bud cells, the earliest pancreas-committed cells, generated from human embryoni...
AbstractEmbryonic pancreatic bud cells, the earliest pancreas-committed cells, generated from human ...
<div><p>Human embryonic stem cells (hESCs) are pluripotent and capable of undergoing multilineage di...