Human neural organoids, generated from pluripotent stem cells in vitro, are useful tools to study human brain development, evolution and disease. However, it is unclear which parts of the human brain are covered by existing protocols, and it has been difficult to quantitatively assess organoid variation and fidelity. Here we integrate 36 single-cell transcriptomic datasets spanning 26 protocols into one integrated human neural organoid cell atlas totalling more than 1.7 million cells1–26. Mapping to developing human brain references27–30 shows primary cell types and states that have been generated in vitro, and estimates transcriptomic similarity between primary and organoid counterparts across protocols. We provide a programmatic interface to browse the atlas and query new datasets, and showcase the power of the atlas to annotate organoid cell types and evaluate new organoid protocols. Finally, we show that the atlas can be used as a diverse control cohort to annotate and compare organoid models of neural disease, identifying genes and pathways that may underlie pathological mechanisms with the neural models. The human neural organoid cell atlas will be useful to assess organoid fidelity, characterize perturbed and diseased states and facilitate protocol development.

An integrated transcriptomic cell atlas of human neural organoids / Z. He, L.D.. - In: NATURE. - ISSN 0028-0836. - 635:8039(2024 Nov), pp. 690-698. [10.1038/s41586-024-08172-8]

An integrated transcriptomic cell atlas of human neural organoids

G. Testa;
2024

Abstract

Human neural organoids, generated from pluripotent stem cells in vitro, are useful tools to study human brain development, evolution and disease. However, it is unclear which parts of the human brain are covered by existing protocols, and it has been difficult to quantitatively assess organoid variation and fidelity. Here we integrate 36 single-cell transcriptomic datasets spanning 26 protocols into one integrated human neural organoid cell atlas totalling more than 1.7 million cells1–26. Mapping to developing human brain references27–30 shows primary cell types and states that have been generated in vitro, and estimates transcriptomic similarity between primary and organoid counterparts across protocols. We provide a programmatic interface to browse the atlas and query new datasets, and showcase the power of the atlas to annotate organoid cell types and evaluate new organoid protocols. Finally, we show that the atlas can be used as a diverse control cohort to annotate and compare organoid models of neural disease, identifying genes and pathways that may underlie pathological mechanisms with the neural models. The human neural organoid cell atlas will be useful to assess organoid fidelity, characterize perturbed and diseased states and facilitate protocol development.
Settore BIOS-10/A - Biologia cellulare e applicata
   Learning and modeling the molecular response of single cells to drug perturbations
   DeepCell
   European Commission
   Horizon Europe Framework Programme - European Research Council - HORIZON ERC Grants
   101054957

   Reconstructing human cortex development and malformation with single-cell transcriptomics
   ORGANOMICS
   European Commission
   Horizon 2020 Framework Programme - European Research Council - Starting Grant
   758877

   Molecular atlas of the brain across the human lifespan
   BRAINTIME
   European Commission
   Horizon 2020 Framework Programme - Research and Innovation action
   874606

   Great ape organoids to reconstruct uniquely human development
   ANTHROPOID
   European Commission
   Horizon 2020 Framework Programme - European Research Council - Starting Grant
   803441
nov-2024
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1253638
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