A nomenclature consensus for nervous system organoids and assembloids Editorial


Authors: Pașca, S. P.; Arlotta, P.; Bateup, H. S.; Camp, J. G.; Cappello, S.; Gage, F. H.; Knoblich, J. A.; Kriegstein, A. R.; Lancaster, M. A.; Ming, G. L.; Muotri, A. R.; Park, I. H.; Reiner, O.; Song, H.; Studer, L.; Temple, S.; Testa, G.; Treutlein, B.; Vaccarino, F. M.
Title: A nomenclature consensus for nervous system organoids and assembloids
Abstract: Self-organizing three-dimensional cellular models derived from human pluripotent stem cells or primary tissue have great potential to provide insights into how the human nervous system develops, what makes it unique and how disorders of the nervous system arise, progress and could be treated. Here, to facilitate progress and improve communication with the scientific community and the public, we clarify and provide a basic framework for the nomenclature of human multicellular models of nervous system development and disease, including organoids, assembloids and transplants. © 2022, Springer Nature Limited.
Keywords: consensus; physiology; brain; communication; nomenclature; pluripotent stem cell; pluripotent stem cells; induced pluripotent stem cells; nervous system; cell; stem; induced pluripotent stem cell; cell component; humans; human; organoids; organoid
Journal Title: Nature
Volume: 609
Issue: 7929
ISSN: 0028-0836
Publisher: Nature Publishing Group  
Date Published: 2022-09-29
Start Page: 907
End Page: 910
Language: English
DOI: 10.1038/s41586-022-05219-6
PUBMED: 36171373
PROVIDER: scopus
DOI/URL:
Notes: Article -- Export Date: 1 November 2022 -- Source: Scopus
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  1. Lorenz Studer
    220 Studer