Background: Human-induced pluripotent stem cell-derived hepatocytes (iHeps) have been shown to have considerable potential in liver diseases, toxicity, and pharmacological studies. However, there is a growing need to obtain iHeps that are truly similar to primary adult hepatocytes in terms of morphological features and functions. We generated such human iHeps, self-assembled as organoids (iHep-Orgs). Methods: iPSC-derived hepatoblasts were self-assembled into spheroids and differentiated into mature hepatocytes modulating final step of differentiation. Results: In about four weeks of culture, the albumin secretion levels and the complete disappearance of α-fetoprotein from iHep-Orgs suggested the acquisition of a greater degree of maturatio...
Differentiation of human stem cells to hepatocytes is crucial for industrial applications as well as...
International audienceThe discovery of the wide plasticity of most cell types means that it is now p...
Human hepatocytes, suitable for treatment of patients with liver failure, for the creation of bioart...
Background Mature liver organoids are potential cellular sources for research to understand the path...
Chronic liver diseases represent a primary worldwide health concern. Liver transplantation is the on...
AbstractMaturation of induced pluripotent stem cells (hiPSCs) to hepatocyte-like cells (HLCs) has be...
Liver cell therapy and in vitro models require functional human hepatocytes, the sources of which ar...
Background & AimsHepatocyte-like cells (HLCs), differentiated from pluripotent stem cells by the use...
In this study we used differentiated adult human upcyte(R) cells for the in vitro generation of live...
There is a strong anticipated future for human induced pluripotent stem cell-derived hepatocytes (hi...
Background & Aims Hepatocyte-like cells (HLCs), differentiated from pluripotent stem cells by the us...
Human embryonic stem cells offer a potential unlimited supply for functional hepatocytes, since they...
The potential to differentiate human embryonic stem cells (hESCs) in vitro to provide an unlimited s...
Differentiation of human stem cells to hepatocytes is crucial for industrial applications as well as...
International audienceThe discovery of the wide plasticity of most cell types means that it is now p...
Human hepatocytes, suitable for treatment of patients with liver failure, for the creation of bioart...
Background Mature liver organoids are potential cellular sources for research to understand the path...
Chronic liver diseases represent a primary worldwide health concern. Liver transplantation is the on...
AbstractMaturation of induced pluripotent stem cells (hiPSCs) to hepatocyte-like cells (HLCs) has be...
Liver cell therapy and in vitro models require functional human hepatocytes, the sources of which ar...
Background & AimsHepatocyte-like cells (HLCs), differentiated from pluripotent stem cells by the use...
In this study we used differentiated adult human upcyte(R) cells for the in vitro generation of live...
There is a strong anticipated future for human induced pluripotent stem cell-derived hepatocytes (hi...
Background & Aims Hepatocyte-like cells (HLCs), differentiated from pluripotent stem cells by the us...
Human embryonic stem cells offer a potential unlimited supply for functional hepatocytes, since they...
The potential to differentiate human embryonic stem cells (hESCs) in vitro to provide an unlimited s...
Differentiation of human stem cells to hepatocytes is crucial for industrial applications as well as...
International audienceThe discovery of the wide plasticity of most cell types means that it is now p...
Human hepatocytes, suitable for treatment of patients with liver failure, for the creation of bioart...