Microvesicles provide a mechanism for intercellular communication by embryonic stem cells during embryo implantation

It is unclear how embryonic stem cells (ESC) communicate with surrounding cells during implantation. Here, the authors show that microvesicles (MV) are shed from ESCs, activating integrin and JNK/FAK kinases in trophoblasts, stimulating migration in vitro, and injecting MVs enhances blastocyst impla...

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Main Authors: Laura M. Desrochers, François Bordeleau, Cynthia A. Reinhart-King, Richard A. Cerione, Marc A. Antonyak
Format: article
Language:EN
Published: Nature Portfolio 2016
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Online Access:https://doaj.org/article/516c8dc9e73e4c0e8fffed135eef3048
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spelling oai:doaj.org-article:516c8dc9e73e4c0e8fffed135eef30482021-12-02T15:34:33ZMicrovesicles provide a mechanism for intercellular communication by embryonic stem cells during embryo implantation10.1038/ncomms119582041-1723https://doaj.org/article/516c8dc9e73e4c0e8fffed135eef30482016-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms11958https://doaj.org/toc/2041-1723It is unclear how embryonic stem cells (ESC) communicate with surrounding cells during implantation. Here, the authors show that microvesicles (MV) are shed from ESCs, activating integrin and JNK/FAK kinases in trophoblasts, stimulating migration in vitro, and injecting MVs enhances blastocyst implantation.Laura M. DesrochersFrançois BordeleauCynthia A. Reinhart-KingRichard A. CerioneMarc A. AntonyakNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-11 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Laura M. Desrochers
François Bordeleau
Cynthia A. Reinhart-King
Richard A. Cerione
Marc A. Antonyak
Microvesicles provide a mechanism for intercellular communication by embryonic stem cells during embryo implantation
description It is unclear how embryonic stem cells (ESC) communicate with surrounding cells during implantation. Here, the authors show that microvesicles (MV) are shed from ESCs, activating integrin and JNK/FAK kinases in trophoblasts, stimulating migration in vitro, and injecting MVs enhances blastocyst implantation.
format article
author Laura M. Desrochers
François Bordeleau
Cynthia A. Reinhart-King
Richard A. Cerione
Marc A. Antonyak
author_facet Laura M. Desrochers
François Bordeleau
Cynthia A. Reinhart-King
Richard A. Cerione
Marc A. Antonyak
author_sort Laura M. Desrochers
title Microvesicles provide a mechanism for intercellular communication by embryonic stem cells during embryo implantation
title_short Microvesicles provide a mechanism for intercellular communication by embryonic stem cells during embryo implantation
title_full Microvesicles provide a mechanism for intercellular communication by embryonic stem cells during embryo implantation
title_fullStr Microvesicles provide a mechanism for intercellular communication by embryonic stem cells during embryo implantation
title_full_unstemmed Microvesicles provide a mechanism for intercellular communication by embryonic stem cells during embryo implantation
title_sort microvesicles provide a mechanism for intercellular communication by embryonic stem cells during embryo implantation
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/516c8dc9e73e4c0e8fffed135eef3048
work_keys_str_mv AT lauramdesrochers microvesiclesprovideamechanismforintercellularcommunicationbyembryonicstemcellsduringembryoimplantation
AT francoisbordeleau microvesiclesprovideamechanismforintercellularcommunicationbyembryonicstemcellsduringembryoimplantation
AT cynthiaareinhartking microvesiclesprovideamechanismforintercellularcommunicationbyembryonicstemcellsduringembryoimplantation
AT richardacerione microvesiclesprovideamechanismforintercellularcommunicationbyembryonicstemcellsduringembryoimplantation
AT marcaantonyak microvesiclesprovideamechanismforintercellularcommunicationbyembryonicstemcellsduringembryoimplantation
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