Organoid technologies have become a powerful emerging tool to model liver diseases, for drug screening, and for personalized treatments. These applications are, however, limited in their capacity to generate functional hepatocytes in a reproducible and efficient manner. Here, we generated and characterized the hepatic organoid (eHEPO) culture system using human induced pluripotent stem cell (iPSC)-derived EpCAM-positive endodermal cells as an intermediate. eHEPOs can be produced within 2 weeks and expanded long term (>16 months) without any loss of differentiation capacity to mature hepatocytes. Starting from patient-specific iPSCs, we modeled citrullinemia type 1, a urea cycle disorder caused by mutations in the argininosuccinate synthetas...
Liver cell types derived from induced pluripotent stem cells (iPSCs) share the potential to investig...
Liver organoids are stem cell-derived 3D structures that are generated by liver differentiation sign...
Liver organoids are stem cell-derived 3D structures that are generated by liver differentiation sign...
Organoid technologies have become a powerful emerging tool to model liver diseases, for drug screeni...
Background Mature liver organoids are potential cellular sources for research to understand the path...
st h, a ic ka a c tit e, re eThe liver is mainly composed of two epithelial cell types, hepa-tocytes...
"Liver medicine" refers to all diagnostic and treatment strategies of diseases and conditions that c...
Abstract Genetic liver disease modeling is difficult because it is challenging to access patient tis...
In this study we used differentiated adult human upcyte(R) cells for the in vitro generation of live...
The current organoid culture systems allow pluripotent and adult stem cells to self-organize to form...
Liver diseases negatively impact the quality of life and survival of patients, and often require liv...
Despite the enormous replication potential of the human liver, there are currently no culture system...
Background and Aims: The gap between patients on transplant waiting lists and available donor organs...
Background: Human-induced pluripotent stem cell-derived hepatocytes (iHeps) have been shown to have ...
Adult somatic tissues have proven difficult to expand in vitro, largely because of the complexity of...
Liver cell types derived from induced pluripotent stem cells (iPSCs) share the potential to investig...
Liver organoids are stem cell-derived 3D structures that are generated by liver differentiation sign...
Liver organoids are stem cell-derived 3D structures that are generated by liver differentiation sign...
Organoid technologies have become a powerful emerging tool to model liver diseases, for drug screeni...
Background Mature liver organoids are potential cellular sources for research to understand the path...
st h, a ic ka a c tit e, re eThe liver is mainly composed of two epithelial cell types, hepa-tocytes...
"Liver medicine" refers to all diagnostic and treatment strategies of diseases and conditions that c...
Abstract Genetic liver disease modeling is difficult because it is challenging to access patient tis...
In this study we used differentiated adult human upcyte(R) cells for the in vitro generation of live...
The current organoid culture systems allow pluripotent and adult stem cells to self-organize to form...
Liver diseases negatively impact the quality of life and survival of patients, and often require liv...
Despite the enormous replication potential of the human liver, there are currently no culture system...
Background and Aims: The gap between patients on transplant waiting lists and available donor organs...
Background: Human-induced pluripotent stem cell-derived hepatocytes (iHeps) have been shown to have ...
Adult somatic tissues have proven difficult to expand in vitro, largely because of the complexity of...
Liver cell types derived from induced pluripotent stem cells (iPSCs) share the potential to investig...
Liver organoids are stem cell-derived 3D structures that are generated by liver differentiation sign...
Liver organoids are stem cell-derived 3D structures that are generated by liver differentiation sign...