The developing mouse coronal suture at single-cell resolution

The development of the coronal suture remains incompletely understood. Here the authors perform scRNA-seq and expression validation to uncover the cellular diversity within the murine embryonic coronal suture, thus revealing possible mechanisms for its loss in craniosynostosis.

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Autores principales: D’Juan T. Farmer, Hana Mlcochova, Yan Zhou, Nils Koelling, Guanlin Wang, Neil Ashley, Helena Bugacov, Hung-Jhen Chen, Riana Parvez, Kuo-Chang Tseng, Amy E. Merrill, Robert E. Maxson, Andrew O. M. Wilkie, J. Gage Crump, Stephen R. F. Twigg
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/3246afa29fd747f89ff858bda4cab1c8
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spelling oai:doaj.org-article:3246afa29fd747f89ff858bda4cab1c82021-12-02T16:43:42ZThe developing mouse coronal suture at single-cell resolution10.1038/s41467-021-24917-92041-1723https://doaj.org/article/3246afa29fd747f89ff858bda4cab1c82021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24917-9https://doaj.org/toc/2041-1723The development of the coronal suture remains incompletely understood. Here the authors perform scRNA-seq and expression validation to uncover the cellular diversity within the murine embryonic coronal suture, thus revealing possible mechanisms for its loss in craniosynostosis.D’Juan T. FarmerHana MlcochovaYan ZhouNils KoellingGuanlin WangNeil AshleyHelena BugacovHung-Jhen ChenRiana ParvezKuo-Chang TsengAmy E. MerrillRobert E. MaxsonAndrew O. M. WilkieJ. Gage CrumpStephen R. F. TwiggNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-14 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
D’Juan T. Farmer
Hana Mlcochova
Yan Zhou
Nils Koelling
Guanlin Wang
Neil Ashley
Helena Bugacov
Hung-Jhen Chen
Riana Parvez
Kuo-Chang Tseng
Amy E. Merrill
Robert E. Maxson
Andrew O. M. Wilkie
J. Gage Crump
Stephen R. F. Twigg
The developing mouse coronal suture at single-cell resolution
description The development of the coronal suture remains incompletely understood. Here the authors perform scRNA-seq and expression validation to uncover the cellular diversity within the murine embryonic coronal suture, thus revealing possible mechanisms for its loss in craniosynostosis.
format article
author D’Juan T. Farmer
Hana Mlcochova
Yan Zhou
Nils Koelling
Guanlin Wang
Neil Ashley
Helena Bugacov
Hung-Jhen Chen
Riana Parvez
Kuo-Chang Tseng
Amy E. Merrill
Robert E. Maxson
Andrew O. M. Wilkie
J. Gage Crump
Stephen R. F. Twigg
author_facet D’Juan T. Farmer
Hana Mlcochova
Yan Zhou
Nils Koelling
Guanlin Wang
Neil Ashley
Helena Bugacov
Hung-Jhen Chen
Riana Parvez
Kuo-Chang Tseng
Amy E. Merrill
Robert E. Maxson
Andrew O. M. Wilkie
J. Gage Crump
Stephen R. F. Twigg
author_sort D’Juan T. Farmer
title The developing mouse coronal suture at single-cell resolution
title_short The developing mouse coronal suture at single-cell resolution
title_full The developing mouse coronal suture at single-cell resolution
title_fullStr The developing mouse coronal suture at single-cell resolution
title_full_unstemmed The developing mouse coronal suture at single-cell resolution
title_sort developing mouse coronal suture at single-cell resolution
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/3246afa29fd747f89ff858bda4cab1c8
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