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Human fetal brain self-organizes into long-term expanding organoids

Authors :
Hendriks, Delilah
Pagliaro, Anna
Andreatta, Francesco
Ma, Ziliang
van Giessen, Joey
Massalini, Simone
López-Iglesias, Carmen
van Son, Gijs J.F.
DeMartino, Jeff
Damen, J. Mirjam A.
Zoutendijk, Iris
Staliarova, Nadzeya
Bredenoord, Annelien L.
Holstege, Frank C.P.
Peters, Peter J.
Margaritis, Thanasis
Chuva de Sousa Lopes, Susana
Wu, Wei
Clevers, Hans
Artegiani, Benedetta
Hendriks, Delilah
Pagliaro, Anna
Andreatta, Francesco
Ma, Ziliang
van Giessen, Joey
Massalini, Simone
López-Iglesias, Carmen
van Son, Gijs J.F.
DeMartino, Jeff
Damen, J. Mirjam A.
Zoutendijk, Iris
Staliarova, Nadzeya
Bredenoord, Annelien L.
Holstege, Frank C.P.
Peters, Peter J.
Margaritis, Thanasis
Chuva de Sousa Lopes, Susana
Wu, Wei
Clevers, Hans
Artegiani, Benedetta
Source :
Cell vol.187 (2024) date: 2024-01-31 nr.3 p.712-732 [ISSN 0092-8674]
Publication Year :
2024

Abstract

Human brain development involves an orchestrated, massive neural progenitor expansion while a multi-cellular tissue architecture is established. Continuously expanding organoids can be grown directly from multiple somatic tissues, yet to date, brain organoids can solely be established from pluripotent stem cells. Here, we show that healthy human fetal brain in vitro self-organizes into organoids (FeBOs), phenocopying aspects of in vivo cellular heterogeneity and complex organization. FeBOs can be expanded over long time periods. FeBO growth requires maintenance of tissue integrity, which ensures production of a tissue-like extracellular matrix (ECM) niche, ultimately endowing FeBO expansion. FeBO lines derived from different areas of the central nervous system (CNS), including dorsal and ventral forebrain, preserve their regional identity and allow to probe aspects of positional identity. Using CRISPR-Cas9, we showcase the generation of syngeneic mutant FeBO lines for the study of brain cancer. Taken together, FeBOs constitute a complementary CNS organoid platform.

Details

Database :
OAIster
Journal :
Cell vol.187 (2024) date: 2024-01-31 nr.3 p.712-732 [ISSN 0092-8674]
Notes :
DOI: 10.1016/j.cell.2023.12.012, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1445834873
Document Type :
Electronic Resource