Direct reprogramming by overexpression of defined transcription factors is a promising new method of deriving useful but rare cell types from readily available ones. While the method presents numerous advantages over induced pluripotent stem (iPS) cell approaches, a focus on murine conversions and a reliance on retroviral vectors limit potential human applications. Here we address these concerns by demonstrating direct conversion of human fibroblasts to hepatocyte-like cells via repeated transfection with synthetic modified mRNAs. Hepatic induction was achieved with as little as three transcription factor mRNAs encoding HNF1A plus any two of the factors, FOXA1, FOXA3, or HNF4A in the presence of an optimized hepatic growth medium. We show t...
The conditions to induce human hepatic progenitor cells from other cell types are unclear. Here, the...
International audienceThe discovery of the wide plasticity of most cell types means that it is now p...
To investigate the differentiation potential of human umbilical mesenchymal stem cells (HuMSCs) and ...
Recently, several researchers have reported that direct reprogramming techniques can be used to diff...
The generation of large numbers of functional human hepatocytes for cell-based approaches to liver d...
SummaryThe generation of large numbers of functional human hepatocytes for cell-based approaches to ...
We previously described the generation of induced hepatocyte-like cells (iHeps) using the hepatic tr...
SummaryRecent studies have demonstrated direct reprogramming of fibroblasts into a range of somatic ...
SummaryRecent studies have shown that defined factors could lead to the direct conversion of fibrobl...
Recent studies have shown that defined factors could lead to the direct conversion of fibroblasts in...
Direct reprogramming using defined sets of transcription factors (TFs) is a recent strategy for gene...
Direct reprogramming represents an easy technique to generate induced hepatocytes (iHeps) from somat...
Abstract Background Until now, there is no effective anti-fibrotic therapy available for liver cirrh...
Abstract Background Direct reprogramming of human fibroblasts to hepatocyte-like cells was proposed ...
SummaryObtaining fully functional cell types is a major challenge for drug discovery and regenerativ...
The conditions to induce human hepatic progenitor cells from other cell types are unclear. Here, the...
International audienceThe discovery of the wide plasticity of most cell types means that it is now p...
To investigate the differentiation potential of human umbilical mesenchymal stem cells (HuMSCs) and ...
Recently, several researchers have reported that direct reprogramming techniques can be used to diff...
The generation of large numbers of functional human hepatocytes for cell-based approaches to liver d...
SummaryThe generation of large numbers of functional human hepatocytes for cell-based approaches to ...
We previously described the generation of induced hepatocyte-like cells (iHeps) using the hepatic tr...
SummaryRecent studies have demonstrated direct reprogramming of fibroblasts into a range of somatic ...
SummaryRecent studies have shown that defined factors could lead to the direct conversion of fibrobl...
Recent studies have shown that defined factors could lead to the direct conversion of fibroblasts in...
Direct reprogramming using defined sets of transcription factors (TFs) is a recent strategy for gene...
Direct reprogramming represents an easy technique to generate induced hepatocytes (iHeps) from somat...
Abstract Background Until now, there is no effective anti-fibrotic therapy available for liver cirrh...
Abstract Background Direct reprogramming of human fibroblasts to hepatocyte-like cells was proposed ...
SummaryObtaining fully functional cell types is a major challenge for drug discovery and regenerativ...
The conditions to induce human hepatic progenitor cells from other cell types are unclear. Here, the...
International audienceThe discovery of the wide plasticity of most cell types means that it is now p...
To investigate the differentiation potential of human umbilical mesenchymal stem cells (HuMSCs) and ...