A neural crest cell isotropic-to-nematic phase transition in the developing mammalian gut

Chevalier et al. report that enteric neural crest cells transit during fetal development from an isotropic cell network to a square grid concomitantly with circular smooth muscle differentiation. They propose that smoothmuscle associated extracellular matrix drives this reorientation transition.

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Autores principales: Nicolas R. Chevalier, Yanis Ammouche, Anthony Gomis, Lucas Langlois, Thomas Guilbert, Pierre Bourdoncle, Sylvie Dufour
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/a247fe0b9bbb4d83b5ee6079157fdff8
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spelling oai:doaj.org-article:a247fe0b9bbb4d83b5ee6079157fdff82021-12-02T17:44:54ZA neural crest cell isotropic-to-nematic phase transition in the developing mammalian gut10.1038/s42003-021-02333-52399-3642https://doaj.org/article/a247fe0b9bbb4d83b5ee6079157fdff82021-06-01T00:00:00Zhttps://doi.org/10.1038/s42003-021-02333-5https://doaj.org/toc/2399-3642Chevalier et al. report that enteric neural crest cells transit during fetal development from an isotropic cell network to a square grid concomitantly with circular smooth muscle differentiation. They propose that smoothmuscle associated extracellular matrix drives this reorientation transition.Nicolas R. ChevalierYanis AmmoucheAnthony GomisLucas LangloisThomas GuilbertPierre BourdoncleSylvie DufourNature PortfolioarticleBiology (General)QH301-705.5ENCommunications Biology, Vol 4, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Biology (General)
QH301-705.5
spellingShingle Biology (General)
QH301-705.5
Nicolas R. Chevalier
Yanis Ammouche
Anthony Gomis
Lucas Langlois
Thomas Guilbert
Pierre Bourdoncle
Sylvie Dufour
A neural crest cell isotropic-to-nematic phase transition in the developing mammalian gut
description Chevalier et al. report that enteric neural crest cells transit during fetal development from an isotropic cell network to a square grid concomitantly with circular smooth muscle differentiation. They propose that smoothmuscle associated extracellular matrix drives this reorientation transition.
format article
author Nicolas R. Chevalier
Yanis Ammouche
Anthony Gomis
Lucas Langlois
Thomas Guilbert
Pierre Bourdoncle
Sylvie Dufour
author_facet Nicolas R. Chevalier
Yanis Ammouche
Anthony Gomis
Lucas Langlois
Thomas Guilbert
Pierre Bourdoncle
Sylvie Dufour
author_sort Nicolas R. Chevalier
title A neural crest cell isotropic-to-nematic phase transition in the developing mammalian gut
title_short A neural crest cell isotropic-to-nematic phase transition in the developing mammalian gut
title_full A neural crest cell isotropic-to-nematic phase transition in the developing mammalian gut
title_fullStr A neural crest cell isotropic-to-nematic phase transition in the developing mammalian gut
title_full_unstemmed A neural crest cell isotropic-to-nematic phase transition in the developing mammalian gut
title_sort neural crest cell isotropic-to-nematic phase transition in the developing mammalian gut
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/a247fe0b9bbb4d83b5ee6079157fdff8
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