SummaryRecent studies have demonstrated direct reprogramming of fibroblasts into a range of somatic cell types, but to date stem or progenitor cells have only been reprogrammed for the blood and neuronal lineages. We previously reported generation of induced hepatocyte-like (iHep) cells by transduction of Gata4, Hnf1α, and Foxa3 in p19 Arf null mouse embryonic fibroblasts (MEFs). Here, we show that Hnf1β and Foxa3, liver organogenesis transcription factors, are sufficient to reprogram MEFs into induced hepatic stem cells (iHepSCs). iHepSCs can be stably expanded in vitro and possess the potential of bidirectional differentiation into both hepatocytic and cholangiocytic lineages. In the injured liver of fumarylacetoacetate hydrolase (Fah)-de...
Background Aims: Currently, much effort is directed towards the development of new cell sources for...
Direct reprogramming by overexpression of defined transcription factors is a promising new method of...
Direct conversion from fibroblasts to generate hepatocyte like-cells (iHeps) bypassing the pluripote...
SummaryRecent studies have demonstrated direct reprogramming of fibroblasts into a range of somatic ...
SummaryThe generation of large numbers of functional human hepatocytes for cell-based approaches to ...
Abstract Background Until now, there is no effective anti-fibrotic therapy available for liver cirrh...
The generation of hepatic stem cells (HSCs) has a great potential for cell-based therapy in liver di...
The generation of large numbers of functional human hepatocytes for cell-based approaches to liver d...
Summary: Disorders of the biliary epithelium, known as cholangiopathies, cause severe and irreversib...
Direct reprogramming represents an easy technique to generate induced hepatocytes (iHeps) from somat...
SummaryObtaining fully functional cell types is a major challenge for drug discovery and regenerativ...
SummarySeveral recent studies have showed that mouse and human fibroblasts can be directly reprogram...
Liver regeneration restores the original functionality of hepatocytes and cholangiocytes in response...
The liver is an organ with strong regenerative capacity, yet primary hepatocytes have a low amplific...
SummaryThe liver is thought to utilize facultative stem cells, also known as “oval cells” or “atypic...
Background Aims: Currently, much effort is directed towards the development of new cell sources for...
Direct reprogramming by overexpression of defined transcription factors is a promising new method of...
Direct conversion from fibroblasts to generate hepatocyte like-cells (iHeps) bypassing the pluripote...
SummaryRecent studies have demonstrated direct reprogramming of fibroblasts into a range of somatic ...
SummaryThe generation of large numbers of functional human hepatocytes for cell-based approaches to ...
Abstract Background Until now, there is no effective anti-fibrotic therapy available for liver cirrh...
The generation of hepatic stem cells (HSCs) has a great potential for cell-based therapy in liver di...
The generation of large numbers of functional human hepatocytes for cell-based approaches to liver d...
Summary: Disorders of the biliary epithelium, known as cholangiopathies, cause severe and irreversib...
Direct reprogramming represents an easy technique to generate induced hepatocytes (iHeps) from somat...
SummaryObtaining fully functional cell types is a major challenge for drug discovery and regenerativ...
SummarySeveral recent studies have showed that mouse and human fibroblasts can be directly reprogram...
Liver regeneration restores the original functionality of hepatocytes and cholangiocytes in response...
The liver is an organ with strong regenerative capacity, yet primary hepatocytes have a low amplific...
SummaryThe liver is thought to utilize facultative stem cells, also known as “oval cells” or “atypic...
Background Aims: Currently, much effort is directed towards the development of new cell sources for...
Direct reprogramming by overexpression of defined transcription factors is a promising new method of...
Direct conversion from fibroblasts to generate hepatocyte like-cells (iHeps) bypassing the pluripote...