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  3. Directed differentiation and functional maturation of cortical interneurons from human embryonic stem cells
 

Directed differentiation and functional maturation of cortical interneurons from human embryonic stem cells

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Publisher DOI
10.1016/j.stem.2013.04.008
PubMed ID
23642365
Description
Human pluripotent stem cells are a powerful tool for modeling brain development and disease. The human cortex is composed of two major neuronal populations: projection neurons and local interneurons. Cortical interneurons comprise a diverse class of cell types expressing the neurotransmitter GABA. Dysfunction of cortical interneurons has been implicated in neuropsychiatric diseases, including schizophrenia, autism, and epilepsy. Here, we demonstrate the highly efficient derivation of human cortical interneurons in an NKX2.1::GFP human embryonic stem cell reporter line. Manipulating the timing of SHH activation yields three distinct GFP+ populations with specific transcriptional profiles, neurotransmitter phenotypes, and migratory behaviors. Further differentiation in a murine cortical environment yields parvalbumin- and somatostatin-expressing neurons that exhibit synaptic inputs and electrophysiological properties of cortical interneurons. Our study defines the signals sufficient for modeling human ventral forebrain development in vitro and lays the foundation for studying cortical interneuron involvement in human disease pathology.
Date of Publication
2013-05-02
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Language(s)
en
Contributor(s)
Maroof, Asif M.
Keros, Sotirios
Tyson, Jennifer A.
Ying, Shui-Wang
Ganat, Yosif M.
Merkle, Florian T.
Liu, Becky
Goulburn, Adam
Stanley, Edouard G.
Elefanty, Andrew G.
Widmer, Hans Rudolforcid-logo
Universitätsklinik für Neurochirurgie
Eggan, Kevin
Goldstein, Peter A.
Anderson, Stewart A.
Studer, Lorenz
Additional Credits
Universitätsklinik für Neurochirurgie
Series
Cell stem cell
Publisher
Elsevier
ISSN
1934-5909
Access(Rights)
metadata.only
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