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Corrigendum Open Access | 10.1172/JCI210864

Corrigendum to Single-cell DNA sequencing reveals a high incidence of chromosomal abnormalities in human blastocysts

Effrosyni A. Chavli, Sjoerd J. Klaasen, Diane Van Opstal, Joop S.E. Laven, Geert J.P.L. Kops, and Esther B. Baart

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Published August 17, 2026 - More info

Published in Volume 136, Issue 16 on August 17, 2026
J Clin Invest. 2026;136(16):e210864. https://doi.org/10.1172/JCI210864.
© 2026 Chavli et al. This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
Published August 17, 2026 - Version history
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Single-cell DNA sequencing reveals a high incidence of chromosomal abnormalities in human blastocysts
Effrosyni A. Chavli, Sjoerd J. Klaasen, Diane Van Opstal, Joop S.E. Laven, Geert J.P.L. Kops, Esther B. Baart
Effrosyni A. Chavli, Sjoerd J. Klaasen, Diane Van Opstal, Joop S.E. Laven, Geert J.P.L. Kops, Esther B. Baart
Single-cell karyotype sequencing reveals chromosomal mosaicism to be common in trophectoderm and inner cell mass of human blastocysts, and provides insight into aneuploidy driving mechanisms.
Research Article Genetics Reproductive biology

Single-cell DNA sequencing reveals a high incidence of chromosomal abnormalities in human blastocysts

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Abstract

Aneuploidy, a deviation from the normal chromosome copy number, is common in human embryos and is considered a primary cause of implantation failure and early pregnancy loss. Meiotic errors lead to uniformly abnormal karyotypes, while mitotic errors lead to chromosomal mosaicism: the presence of cells with at least 2 different karyotypes within an embryo. Knowledge about mosaicism in blastocysts mainly derives from bulk DNA sequencing (DNA-Seq) of multicellular trophectoderm (TE) and/or inner cell mass (ICM) samples. However, this can only detect an average net gain or loss of DNA above a detection threshold of 20%–30%. To accurately assess mosaicism, we separated the TE and ICM of 55 good-quality surplus blastocysts and successfully applied single-cell whole-genome sequencing (scKaryo-Seq) on 1,057 cells. Mosaicism involving numerical and structural chromosome abnormalities was detected in 82% of the embryos, in which most abnormalities affected less than 20% of the cells. Structural abnormalities, potentially caused by replication stress and DNA damage, were observed in 69% of the embryos. In conclusion, our findings indicated that mosaicism was prevalent in good-quality blastocysts, whereas these blastocysts would likely be identified as normal with current bulk DNA-Seq techniques used for preimplantation genetic testing for aneuploidy.

Authors

Effrosyni A. Chavli, Sjoerd J. Klaasen, Diane Van Opstal, Joop S.E. Laven, Geert J.P.L. Kops, Esther B. Baart

×

Original citation: J Clin Invest. 2024;134(6):e174483. https://doi.org/10.1172/JCI174483

Citation for this corrigendum: J Clin Invest. 2026;136(16):e210864. https://doi.org/10.1172/JCI210864

The Data availability section has been updated to provide the correct accession number for the raw sequencing data. The corrected text is below.

Data availability. The raw sequencing data were deposited in a controlled-access repository, the European Genome-Phenome Archive (EGA) (accession number EGAS50000001913). Values for all data points in graphs are reported in the Supplemental Supporting Data Values file.

The authors regret the error.

The HTML and PDF versions have been updated online.

Footnotes

See the related article at Single-cell DNA sequencing reveals a high incidence of chromosomal abnormalities in human blastocysts.

Version history
  • Version 1 (August 17, 2026): Electronic publication

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