An oviduct-on-a-chip provides an enhanced in vitro environment for zygote genome reprogramming

In vitro culture has detrimental effects on transcriptomes and epigenetic programming of zygotes. Here the authors use microfluidic technology to co-culture bovine oviduct epithelial cells with zygotes and show that the transcriptomes and global methylation patterns of these zygotes are more similar...

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Autores principales: Marcia A. M. M. Ferraz, Hoon Suk Rho, Daiane Hemerich, Heiko H. W. Henning, Helena T. A. van Tol, Michael Hölker, Urban Besenfelder, Michal Mokry, Peter L. A. M. Vos, Tom A. E. Stout, Séverine Le Gac, Bart M. Gadella
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/b2189c0b6d4a43509e715b245fc4d76a
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spelling oai:doaj.org-article:b2189c0b6d4a43509e715b245fc4d76a2021-12-02T14:41:17ZAn oviduct-on-a-chip provides an enhanced in vitro environment for zygote genome reprogramming10.1038/s41467-018-07119-82041-1723https://doaj.org/article/b2189c0b6d4a43509e715b245fc4d76a2018-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07119-8https://doaj.org/toc/2041-1723In vitro culture has detrimental effects on transcriptomes and epigenetic programming of zygotes. Here the authors use microfluidic technology to co-culture bovine oviduct epithelial cells with zygotes and show that the transcriptomes and global methylation patterns of these zygotes are more similar to in vivo zygotes than to conventionally cultured zygotes.Marcia A. M. M. FerrazHoon Suk RhoDaiane HemerichHeiko H. W. HenningHelena T. A. van TolMichael HölkerUrban BesenfelderMichal MokryPeter L. A. M. VosTom A. E. StoutSéverine Le GacBart M. GadellaNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-14 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Marcia A. M. M. Ferraz
Hoon Suk Rho
Daiane Hemerich
Heiko H. W. Henning
Helena T. A. van Tol
Michael Hölker
Urban Besenfelder
Michal Mokry
Peter L. A. M. Vos
Tom A. E. Stout
Séverine Le Gac
Bart M. Gadella
An oviduct-on-a-chip provides an enhanced in vitro environment for zygote genome reprogramming
description In vitro culture has detrimental effects on transcriptomes and epigenetic programming of zygotes. Here the authors use microfluidic technology to co-culture bovine oviduct epithelial cells with zygotes and show that the transcriptomes and global methylation patterns of these zygotes are more similar to in vivo zygotes than to conventionally cultured zygotes.
format article
author Marcia A. M. M. Ferraz
Hoon Suk Rho
Daiane Hemerich
Heiko H. W. Henning
Helena T. A. van Tol
Michael Hölker
Urban Besenfelder
Michal Mokry
Peter L. A. M. Vos
Tom A. E. Stout
Séverine Le Gac
Bart M. Gadella
author_facet Marcia A. M. M. Ferraz
Hoon Suk Rho
Daiane Hemerich
Heiko H. W. Henning
Helena T. A. van Tol
Michael Hölker
Urban Besenfelder
Michal Mokry
Peter L. A. M. Vos
Tom A. E. Stout
Séverine Le Gac
Bart M. Gadella
author_sort Marcia A. M. M. Ferraz
title An oviduct-on-a-chip provides an enhanced in vitro environment for zygote genome reprogramming
title_short An oviduct-on-a-chip provides an enhanced in vitro environment for zygote genome reprogramming
title_full An oviduct-on-a-chip provides an enhanced in vitro environment for zygote genome reprogramming
title_fullStr An oviduct-on-a-chip provides an enhanced in vitro environment for zygote genome reprogramming
title_full_unstemmed An oviduct-on-a-chip provides an enhanced in vitro environment for zygote genome reprogramming
title_sort oviduct-on-a-chip provides an enhanced in vitro environment for zygote genome reprogramming
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/b2189c0b6d4a43509e715b245fc4d76a
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