Anisotropic forces from spatially constrained focal adhesions mediate contact guidance directed cell migration

Contact guidance on aligned substrates leads to directed cell migration through a poorly defined mechanism. Here the authors show that alignment of adhesion structures and F-actin generates anisotropic traction stress to drive directional migration, and cell-cell contact reduces force orientation an...

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Autores principales: Arja Ray, Oscar Lee, Zaw Win, Rachel M. Edwards, Patrick W. Alford, Deok-Ho Kim, Paolo P. Provenzano
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/95889ff4ba5747cf995513288d87a844
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spelling oai:doaj.org-article:95889ff4ba5747cf995513288d87a8442021-12-02T15:38:49ZAnisotropic forces from spatially constrained focal adhesions mediate contact guidance directed cell migration10.1038/ncomms149232041-1723https://doaj.org/article/95889ff4ba5747cf995513288d87a8442017-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms14923https://doaj.org/toc/2041-1723Contact guidance on aligned substrates leads to directed cell migration through a poorly defined mechanism. Here the authors show that alignment of adhesion structures and F-actin generates anisotropic traction stress to drive directional migration, and cell-cell contact reduces force orientation and directional response.Arja RayOscar LeeZaw WinRachel M. EdwardsPatrick W. AlfordDeok-Ho KimPaolo P. ProvenzanoNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-17 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Arja Ray
Oscar Lee
Zaw Win
Rachel M. Edwards
Patrick W. Alford
Deok-Ho Kim
Paolo P. Provenzano
Anisotropic forces from spatially constrained focal adhesions mediate contact guidance directed cell migration
description Contact guidance on aligned substrates leads to directed cell migration through a poorly defined mechanism. Here the authors show that alignment of adhesion structures and F-actin generates anisotropic traction stress to drive directional migration, and cell-cell contact reduces force orientation and directional response.
format article
author Arja Ray
Oscar Lee
Zaw Win
Rachel M. Edwards
Patrick W. Alford
Deok-Ho Kim
Paolo P. Provenzano
author_facet Arja Ray
Oscar Lee
Zaw Win
Rachel M. Edwards
Patrick W. Alford
Deok-Ho Kim
Paolo P. Provenzano
author_sort Arja Ray
title Anisotropic forces from spatially constrained focal adhesions mediate contact guidance directed cell migration
title_short Anisotropic forces from spatially constrained focal adhesions mediate contact guidance directed cell migration
title_full Anisotropic forces from spatially constrained focal adhesions mediate contact guidance directed cell migration
title_fullStr Anisotropic forces from spatially constrained focal adhesions mediate contact guidance directed cell migration
title_full_unstemmed Anisotropic forces from spatially constrained focal adhesions mediate contact guidance directed cell migration
title_sort anisotropic forces from spatially constrained focal adhesions mediate contact guidance directed cell migration
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/95889ff4ba5747cf995513288d87a844
work_keys_str_mv AT arjaray anisotropicforcesfromspatiallyconstrainedfocaladhesionsmediatecontactguidancedirectedcellmigration
AT oscarlee anisotropicforcesfromspatiallyconstrainedfocaladhesionsmediatecontactguidancedirectedcellmigration
AT zawwin anisotropicforcesfromspatiallyconstrainedfocaladhesionsmediatecontactguidancedirectedcellmigration
AT rachelmedwards anisotropicforcesfromspatiallyconstrainedfocaladhesionsmediatecontactguidancedirectedcellmigration
AT patrickwalford anisotropicforcesfromspatiallyconstrainedfocaladhesionsmediatecontactguidancedirectedcellmigration
AT deokhokim anisotropicforcesfromspatiallyconstrainedfocaladhesionsmediatecontactguidancedirectedcellmigration
AT paolopprovenzano anisotropicforcesfromspatiallyconstrainedfocaladhesionsmediatecontactguidancedirectedcellmigration
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