The hepatic differentiation of human induced pluripotent stem cells (hiPSC) holds great potential for application in regenerative medicine, pharmacological drug screening, and toxicity testing. However, full maturation of hiPSC into functional hepatocytes has not yet been achieved. In this study, we investigated the potential of a dynamic three-dimensional (3D) hollow fiber membrane bioreactor technology to improve the hepatic differentiation of hiPSC in comparison to static two-dimensional (2D) cultures. A total of 100 × 106 hiPSC were seeded into each 3D bioreactor (n = 3). Differentiation into definitive endoderm (DE) was induced by adding activin A, Wnt3a, and sodium butyrate to the culture medium. For further maturation, hepatocyte gro...
Developing renewable human liver tissue from stem cells has been pursued as a potential source of bi...
Liver transplantation is the definitive treatment of liver failure but donor organ shortage limits i...
Background: Generating hepatocytes with complete liver functions is still a challenge and developing...
Drug-induced liver injury is a serious and frequently occurring adverse drug reaction in the clinics...
Liver cell therapy and in vitro models require functional human hepatocytes, the sources of which ar...
Hepatic differentiation of human-induced pluripotent stem cells (hiPSCs) under flow conditions in a ...
The therapeutic potential of human pluripotent stem (hPS) cells is threatened by the difficulty to h...
Human hepatocytes, suitable for treatment of patients with liver failure, for the creation of bioart...
Induced pluripotent stem cell (iPSC) technology enables differentiation of human hepatocytes or hepa...
As the major research focus is shifting to three-dimensional (3D) cultivation techniques, hollow-fib...
The functional maturation and preservation of hepatic cells derived from human induced pluripotent s...
The ideal bioartificial liver should be designed to reproduce as nearly as possible in vitro the hab...
Translation of stem cell research to industrial and clinical settings mostly requires large quantiti...
The ideal bioartificial liver should be designed to reproduce as nearly as possible in vitro the hab...
Human embryonic stemcells (hESCs) and induced pluripotent stemcells (iPSCs) provide an unlimited sou...
Developing renewable human liver tissue from stem cells has been pursued as a potential source of bi...
Liver transplantation is the definitive treatment of liver failure but donor organ shortage limits i...
Background: Generating hepatocytes with complete liver functions is still a challenge and developing...
Drug-induced liver injury is a serious and frequently occurring adverse drug reaction in the clinics...
Liver cell therapy and in vitro models require functional human hepatocytes, the sources of which ar...
Hepatic differentiation of human-induced pluripotent stem cells (hiPSCs) under flow conditions in a ...
The therapeutic potential of human pluripotent stem (hPS) cells is threatened by the difficulty to h...
Human hepatocytes, suitable for treatment of patients with liver failure, for the creation of bioart...
Induced pluripotent stem cell (iPSC) technology enables differentiation of human hepatocytes or hepa...
As the major research focus is shifting to three-dimensional (3D) cultivation techniques, hollow-fib...
The functional maturation and preservation of hepatic cells derived from human induced pluripotent s...
The ideal bioartificial liver should be designed to reproduce as nearly as possible in vitro the hab...
Translation of stem cell research to industrial and clinical settings mostly requires large quantiti...
The ideal bioartificial liver should be designed to reproduce as nearly as possible in vitro the hab...
Human embryonic stemcells (hESCs) and induced pluripotent stemcells (iPSCs) provide an unlimited sou...
Developing renewable human liver tissue from stem cells has been pursued as a potential source of bi...
Liver transplantation is the definitive treatment of liver failure but donor organ shortage limits i...
Background: Generating hepatocytes with complete liver functions is still a challenge and developing...