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[Preprint]. 2023 Feb 17:2023.02.17.528906.
doi: 10.1101/2023.02.17.528906.

Generation of human cerebral organoids with a structured outer subventricular zone

Generation of human cerebral organoids with a structured outer subventricular zone

Ryan Walsh et al. bioRxiv. .

Update in

  • Generation of human cerebral organoids with a structured outer subventricular zone.
    Walsh RM, Luongo R, Giacomelli E, Ciceri G, Rittenhouse C, Verrillo A, Galimberti M, Bocchi VD, Wu Y, Xu N, Mosole S, Muller J, Vezzoli E, Jungverdorben J, Zhou T, Barker RA, Cattaneo E, Studer L, Baggiolini A. Walsh RM, et al. Cell Rep. 2024 Apr 23;43(4):114031. doi: 10.1016/j.celrep.2024.114031. Epub 2024 Apr 6. Cell Rep. 2024. PMID: 38583153 Free PMC article.

Abstract

Mammalian outer radial glia (oRG) emerge as cortical progenitor cells that directly support the development of an enlarged outer subventricular zone (oSVZ) and, in turn, the expansion of the neocortex. The in vitro generation of oRG is essential to model and investigate the underlying mechanisms of human neocortical development and expansion. By activating the STAT3 pathway using LIF, which is not produced in guided cortical organoids, we developed a cerebral organoid differentiation method from human pluripotent stem cells (hPSCs) that recapitulates the expansion of a progenitor pool into the oSVZ. The structured oSVZ is composed of progenitor cells expressing specific oRG markers such as GFAP, LIFR, HOPX , which closely matches human oRG in vivo . In this microenvironment, cortical neurons showed faster maturation with enhanced metabolic and functional activity. Incorporation of hPSC-derived brain vascular LIF- producing pericytes in cerebral organoids mimicked the effects of LIF treatment. These data indicate that the cellular complexity of the cortical microenvironment, including cell-types of the brain vasculature, favors the appearance of oRG and provides a platform to routinely study oRG in hPSC-derived brain organoids.

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