The specification of the hepatic identity during human liver development is strictly controlled by extrinsic signals, yet it is still not clear how cells respond to these exogenous signals by activating secretory cascades, which are extremely relevant, especially in 3D self-organizing systems. Here, we investigate how the proteins secreted by human pluripotent stem cells (hPSCs) in response to developmental exogenous signals affect the progression from endoderm to the hepatic lineage, including their competence to generate nascent hepatic organoids. By using microfluidic confined environment and stable isotope labeling with amino acids in cell culture-coupled mass spectrometry (SILAC-MS) quantitative proteomic analysis, we find high abu...
Background: Human-induced pluripotent stem cell-derived hepatocytes (iHeps) have been shown to have ...
The stem cell microenvironment contains soluble factors, support cells, and components of the extrac...
We recently reported a novel method to induce embryonic stem (ES) cells differentiate into an endode...
The specification of the hepatic identity during human liver development is strictly controlled by e...
Background: Despite extensive research on hepatic cells precursors and their differentiated states, ...
International audienceDespite extensive research on hepatic cells precursors and their differentiate...
Interactions between the different liver cell types are critical to the maintenance or induction of ...
The establishment of in vitro naive human pluripotent stem cell cultures opened new perspectives for...
The cellular microenvironment comprises soluble factors, support cells, and components of the extrac...
<div><p>Preparing targeted cells for medical applications from human induced pluripotent stem cells ...
SummaryWhen comparing hepatic phenotypes between iPSC-derived hepatocyte-like cells from different l...
Numerous in vitro models endeavour to mimic the characteristics of primary human hepatocytes for ap...
Human pluripotent stem cell-derived hepatocytes (hPSC-HEP) display many properties of mature hepatoc...
Liver organoids (LOs) are receiving considerable attention for their potential use in drug screening...
International audienceThe differentiation of human induced pluripotent stem cells (hiPSCs) into func...
Background: Human-induced pluripotent stem cell-derived hepatocytes (iHeps) have been shown to have ...
The stem cell microenvironment contains soluble factors, support cells, and components of the extrac...
We recently reported a novel method to induce embryonic stem (ES) cells differentiate into an endode...
The specification of the hepatic identity during human liver development is strictly controlled by e...
Background: Despite extensive research on hepatic cells precursors and their differentiated states, ...
International audienceDespite extensive research on hepatic cells precursors and their differentiate...
Interactions between the different liver cell types are critical to the maintenance or induction of ...
The establishment of in vitro naive human pluripotent stem cell cultures opened new perspectives for...
The cellular microenvironment comprises soluble factors, support cells, and components of the extrac...
<div><p>Preparing targeted cells for medical applications from human induced pluripotent stem cells ...
SummaryWhen comparing hepatic phenotypes between iPSC-derived hepatocyte-like cells from different l...
Numerous in vitro models endeavour to mimic the characteristics of primary human hepatocytes for ap...
Human pluripotent stem cell-derived hepatocytes (hPSC-HEP) display many properties of mature hepatoc...
Liver organoids (LOs) are receiving considerable attention for their potential use in drug screening...
International audienceThe differentiation of human induced pluripotent stem cells (hiPSCs) into func...
Background: Human-induced pluripotent stem cell-derived hepatocytes (iHeps) have been shown to have ...
The stem cell microenvironment contains soluble factors, support cells, and components of the extrac...
We recently reported a novel method to induce embryonic stem (ES) cells differentiate into an endode...