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Generation of Hepatic Stellate Cells from Human Pluripotent Stem Cells Enables In Vitro Modeling of Liver Fibrosis

Authors :
Ayla Smout
Adil El Taghdouini
Inge Mannaerts
Ruben Boon
Leo A. van Grunsven
Isabel Graupera
Beatriz Aguilar-Bravo
Daniel Rodrigo-Torres
Juan José Lozano
Christophe Chesne
Pau Sancho-Bru
Catherine M. Verfaillie
Etienne Sokal
Julia Vallverdú
Delia Blaya
L. Perea
Mar Coll
Sofia B. Leite
Mustapha Najimi
Basic (bio-) Medical Sciences
Liver Cell Biology
Faculty of Medicine and Pharmacy
Translational Liver Cell Biology
UCL - SSS/IREC/PEDI - Pôle de Pédiatrie
UCL - (SLuc) Service de gastro-entérologie et hépatologie pédiatrique
Source :
Cell Stem Cell, Cell stem cell, Vol. 23, no.1, p. 101-113.e7 (2018)
Publication Year :
2018
Publisher :
CELL PRESS, 2018.

Abstract

The development of complex in vitro hepatic systems and artificial liver devices has been hampered by the lack of reliable sources for relevant cell types, such as hepatic stellate cells (HSCs). Here we report efficient differentiation of human pluripotent stem cells into HSC-like cells (iPSC-HSCs). iPSC-HSCs closely resemble primary human HSCs at the transcriptional, cellular, and functional levels and possess a gene expression profile intermediate between that of quiescent and activated HSCs. Functional analyses revealed that iPSC-HSCs accumulate retinyl esters in lipid droplets and are activated in response to mediators of wound healing, similar to their in vivo counterparts. When maintained as 3D spheroids with HepaRG hepatocytes, iPSC-HSCs exhibit a quiescent phenotype but mount a fibrogenic response and secrete pro-collagen in response to known stimuli and hepatocyte toxicity. Thus, this protocol provides a robust in vitro system for studying HSC development, modeling liver fibrosis, and drug toxicity screening. ispartof: CELL STEM CELL vol:23 issue:1 pages:101-+ ispartof: location:United States status: published

Details

Language :
English
Database :
OpenAIRE
Journal :
Cell Stem Cell, Cell stem cell, Vol. 23, no.1, p. 101-113.e7 (2018)
Accession number :
edsair.doi.dedup.....10a1aabb97bce6b174d937188b16db61