Neuronal sFlt1 and Vegfaa determine venous sprouting and spinal cord vascularization

The generation of vasculature in organs is regulated by cross-talk between the developing tissue and specialized endothelial cells. Here, the authors show that vessel growth feeding the zebrafish spinal cord is coordinated by balancing neuron-derived pro-angiogenic ligand Vegfaa and its receptor, sF...

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Autores principales: Raphael Wild, Alina Klems, Masanari Takamiya, Yuya Hayashi, Uwe Strähle, Koji Ando, Naoki Mochizuki, Andreas van Impel, Stefan Schulte-Merker, Janna Krueger, Laetitia Preau, Ferdinand le Noble
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/cdc7bf090b8e4a769873ee7f421be5b1
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spelling oai:doaj.org-article:cdc7bf090b8e4a769873ee7f421be5b12021-12-02T14:42:22ZNeuronal sFlt1 and Vegfaa determine venous sprouting and spinal cord vascularization10.1038/ncomms139912041-1723https://doaj.org/article/cdc7bf090b8e4a769873ee7f421be5b12017-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms13991https://doaj.org/toc/2041-1723The generation of vasculature in organs is regulated by cross-talk between the developing tissue and specialized endothelial cells. Here, the authors show that vessel growth feeding the zebrafish spinal cord is coordinated by balancing neuron-derived pro-angiogenic ligand Vegfaa and its receptor, sFlt1.Raphael WildAlina KlemsMasanari TakamiyaYuya HayashiUwe SträhleKoji AndoNaoki MochizukiAndreas van ImpelStefan Schulte-MerkerJanna KruegerLaetitia PreauFerdinand le NobleNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-17 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Raphael Wild
Alina Klems
Masanari Takamiya
Yuya Hayashi
Uwe Strähle
Koji Ando
Naoki Mochizuki
Andreas van Impel
Stefan Schulte-Merker
Janna Krueger
Laetitia Preau
Ferdinand le Noble
Neuronal sFlt1 and Vegfaa determine venous sprouting and spinal cord vascularization
description The generation of vasculature in organs is regulated by cross-talk between the developing tissue and specialized endothelial cells. Here, the authors show that vessel growth feeding the zebrafish spinal cord is coordinated by balancing neuron-derived pro-angiogenic ligand Vegfaa and its receptor, sFlt1.
format article
author Raphael Wild
Alina Klems
Masanari Takamiya
Yuya Hayashi
Uwe Strähle
Koji Ando
Naoki Mochizuki
Andreas van Impel
Stefan Schulte-Merker
Janna Krueger
Laetitia Preau
Ferdinand le Noble
author_facet Raphael Wild
Alina Klems
Masanari Takamiya
Yuya Hayashi
Uwe Strähle
Koji Ando
Naoki Mochizuki
Andreas van Impel
Stefan Schulte-Merker
Janna Krueger
Laetitia Preau
Ferdinand le Noble
author_sort Raphael Wild
title Neuronal sFlt1 and Vegfaa determine venous sprouting and spinal cord vascularization
title_short Neuronal sFlt1 and Vegfaa determine venous sprouting and spinal cord vascularization
title_full Neuronal sFlt1 and Vegfaa determine venous sprouting and spinal cord vascularization
title_fullStr Neuronal sFlt1 and Vegfaa determine venous sprouting and spinal cord vascularization
title_full_unstemmed Neuronal sFlt1 and Vegfaa determine venous sprouting and spinal cord vascularization
title_sort neuronal sflt1 and vegfaa determine venous sprouting and spinal cord vascularization
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/cdc7bf090b8e4a769873ee7f421be5b1
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