Primary human hepatocytes were immortalized by stable transfection with a recombinant plasmid containing the early region of simian virus (SV) 40. The cells were cultured in serum-free, hormonally defined medium during the immortalization procedure. Foci of dividing cells were seen after 3 months. Albumin- and fibrinogen-secreting cells were selected and cloned by limiting dilution to obtain homologous cell populations. The established IHH (immortalized human hepatocyte) cell lines were evaluated for their usefulness in studying the regulation of cell growth and of certain differentiated hepatocyte functions.IHH cells retain several differentiated features of normal hepatocytes. They display albumin secretion at a level comparable to cultur...
The use of primary cells in human liver therapy is limited by a lack of cells. Induced pluripotent s...
Pluripotent stem cells can differentiate into many cell types including mature hepatocytes, and can ...
The potential to differentiate human embryonic stem cells (hESCs) in vitro to provide an unlimited s...
Primary human hepatocytes were immortalized by stable transfection with a recombinant plasmid contai...
Human primary hepatocytes (PHs) are critical to studying liver functions, drug metabolism and toxici...
The increasing demand and hampered use of primary human hepatocytes for research purposes have urged...
Five different immortalized transgenic hepatocyte cell lines derived from mice were investigated wit...
Cultivation of the new immortalized hepatocyte cell line HepZ was performed with a 1:1 mixture of DM...
Background: Human-induced pluripotent stem cell-derived hepatocytes (iHeps) have been shown to have ...
BACKGROUND: A clonal cell line that combines both stable hepatic function and proliferation capacity...
The potential of three genetic changes introduced into mice by the transgenic or knockout technology...
International audienceGenerating the proliferation of differentiated normal adult human hepatocytes ...
Morphologically and functionally intact human hepatocytes were isolated from small liver biopsy samp...
AbstractThe establishment of protocols to differentiate human pluripotent stem cells (hPSCs) includi...
The establishment of protocols to differentiate human pluripotent stem cells (hPSCs) including embry...
The use of primary cells in human liver therapy is limited by a lack of cells. Induced pluripotent s...
Pluripotent stem cells can differentiate into many cell types including mature hepatocytes, and can ...
The potential to differentiate human embryonic stem cells (hESCs) in vitro to provide an unlimited s...
Primary human hepatocytes were immortalized by stable transfection with a recombinant plasmid contai...
Human primary hepatocytes (PHs) are critical to studying liver functions, drug metabolism and toxici...
The increasing demand and hampered use of primary human hepatocytes for research purposes have urged...
Five different immortalized transgenic hepatocyte cell lines derived from mice were investigated wit...
Cultivation of the new immortalized hepatocyte cell line HepZ was performed with a 1:1 mixture of DM...
Background: Human-induced pluripotent stem cell-derived hepatocytes (iHeps) have been shown to have ...
BACKGROUND: A clonal cell line that combines both stable hepatic function and proliferation capacity...
The potential of three genetic changes introduced into mice by the transgenic or knockout technology...
International audienceGenerating the proliferation of differentiated normal adult human hepatocytes ...
Morphologically and functionally intact human hepatocytes were isolated from small liver biopsy samp...
AbstractThe establishment of protocols to differentiate human pluripotent stem cells (hPSCs) includi...
The establishment of protocols to differentiate human pluripotent stem cells (hPSCs) including embry...
The use of primary cells in human liver therapy is limited by a lack of cells. Induced pluripotent s...
Pluripotent stem cells can differentiate into many cell types including mature hepatocytes, and can ...
The potential to differentiate human embryonic stem cells (hESCs) in vitro to provide an unlimited s...