Timely controlled oxygen (O2) delivery is crucial for the developing liver. However, the influence of O2 on intercellular communication during hepatogenesis is unclear. Using a human induced pluripotent stem cell-derived liver bud (hiPSC-LB) model, we found hypoxia induced with an O2-permeable plate promoted hepatic differentiation accompanied by TGFB1 and TGFB3 suppression. Conversely, extensive hypoxia generated with an O2-non-permeable plate elevated TGFBs and cholangiocyte marker expression. Single-cell RNA sequencing revealed that TGFB1 and TGFB3 are primarily expressed in the human liver mesenchyme and endothelium similar to in the hiPSC-LBs. Stromal cell-specific RNA interferences indicated the importance of TGFB signaling for hepato...
Includes bibliographical references (pages 59-63)Hypoxia stimulates human embryonic stem cell (hESC)...
AbstractHypoxia is one way of inducing differentiation due to the activation of the key regulatory f...
Oxygen dynamics in the liver is a central signaling mediator controlling hepatic homeostasis, and dy...
Summary: Timely controlled oxygen (O2) delivery is crucial for the developing liver. However, the in...
Timely controlled oxygen (O2) delivery is crucial for the developing liver. However, the influence o...
Induced hepatic stem cells (iHepSCs) have great potential as donors for liver cell therapy due to th...
AbstractHypoxia is a common environmental stress factor and is also associated with various physiolo...
The in vitro generation of terminally differentiated hepatocytes is an unmet need. We investigated t...
BACKGROUND/AIMS: We investigated the molecular response of a non-ischemic hypoxic stress in the live...
Hypoxia is a common environmental stress factor and is also associated with various physiological an...
Interaction between sinusoidal endothelial cells and hepatocytes is a prerequisite for liver functio...
Background: The activation of hepatic stellate cells (HSCs) plays a pivotal role during liver injury...
The cellular microenvironment, together with intrinsic regulators, shapes stem cell identity and dif...
Human embryonic stem (hES) cells derived from the inner cell mass of the blastocyst propagate by sel...
Hypoxic environment is theoretically more physiological for the growth of human embryonic stem (hES)...
Includes bibliographical references (pages 59-63)Hypoxia stimulates human embryonic stem cell (hESC)...
AbstractHypoxia is one way of inducing differentiation due to the activation of the key regulatory f...
Oxygen dynamics in the liver is a central signaling mediator controlling hepatic homeostasis, and dy...
Summary: Timely controlled oxygen (O2) delivery is crucial for the developing liver. However, the in...
Timely controlled oxygen (O2) delivery is crucial for the developing liver. However, the influence o...
Induced hepatic stem cells (iHepSCs) have great potential as donors for liver cell therapy due to th...
AbstractHypoxia is a common environmental stress factor and is also associated with various physiolo...
The in vitro generation of terminally differentiated hepatocytes is an unmet need. We investigated t...
BACKGROUND/AIMS: We investigated the molecular response of a non-ischemic hypoxic stress in the live...
Hypoxia is a common environmental stress factor and is also associated with various physiological an...
Interaction between sinusoidal endothelial cells and hepatocytes is a prerequisite for liver functio...
Background: The activation of hepatic stellate cells (HSCs) plays a pivotal role during liver injury...
The cellular microenvironment, together with intrinsic regulators, shapes stem cell identity and dif...
Human embryonic stem (hES) cells derived from the inner cell mass of the blastocyst propagate by sel...
Hypoxic environment is theoretically more physiological for the growth of human embryonic stem (hES)...
Includes bibliographical references (pages 59-63)Hypoxia stimulates human embryonic stem cell (hESC)...
AbstractHypoxia is one way of inducing differentiation due to the activation of the key regulatory f...
Oxygen dynamics in the liver is a central signaling mediator controlling hepatic homeostasis, and dy...