Blastocyst-like structures generated from human pluripotent stem cells
- PMID: 33731924
- DOI: 10.1038/s41586-021-03356-y
Blastocyst-like structures generated from human pluripotent stem cells
Erratum in
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Author Correction: Blastocyst-like structures generated from human pluripotent stem cells.Nature. 2021 Aug;596(7872):E5. doi: 10.1038/s41586-021-03635-8. Nature. 2021. PMID: 34341538 No abstract available.
Abstract
Limited access to embryos has hampered the study of human embryogenesis and disorders that occur during early pregnancy. Human pluripotent stem cells provide an alternative means to study human development in a dish1-7. Recent advances in partial embryo models derived from human pluripotent stem cells have enabled human development to be examined at early post-implantation stages8-14. However, models of the pre-implantation human blastocyst are lacking. Starting from naive human pluripotent stem cells, here we developed an effective three-dimensional culture strategy with successive lineage differentiation and self-organization to generate blastocyst-like structures in vitro. These structures-which we term 'human blastoids'-resemble human blastocysts in terms of their morphology, size, cell number, and composition and allocation of different cell lineages. Single-cell RNA-sequencing analyses also reveal the transcriptomic similarity of blastoids to blastocysts. Human blastoids are amenable to embryonic and extra-embryonic stem cell derivation and can further develop into peri-implantation embryo-like structures in vitro. Using chemical perturbations, we show that specific isozymes of protein kinase C have a critical function in the formation of the blastoid cavity. Human blastoids provide a readily accessible, scalable, versatile and perturbable alternative to blastocysts for studying early human development, understanding early pregnancy loss and gaining insights into early developmental defects.
Comment in
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Lab-grown structures mimic human embryo's earliest stage yet.Nature. 2021 Mar;591(7851):510-511. doi: 10.1038/d41586-021-00695-8. Nature. 2021. PMID: 33731911 No abstract available.
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3D in vitro models of human blastocysts.Nat Methods. 2021 May;18(5):445. doi: 10.1038/s41592-021-01158-8. Nat Methods. 2021. PMID: 33963353 No abstract available.
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Blastoids: a new model for human blastocyst development.Signal Transduct Target Ther. 2021 Jun 16;6(1):239. doi: 10.1038/s41392-021-00663-8. Signal Transduct Target Ther. 2021. PMID: 34135304 Free PMC article. No abstract available.
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