Preventing tissue fibrosis by local biomaterials interfacing of specific cryptic extracellular matrix information

Matrix metalloproteinase enzymes are widely known to contribute to the breakdown of tissues. Here, the authors utilise a biomaterial substrate functionalised with a laminin fragment to modulate the expression of these enzymes, subsequently controlling the integrity of tissue.

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Autores principales: Christine-Maria Horejs, Jean-Philippe St-Pierre, Juha R. M. Ojala, Joseph A. M. Steele, Patricia Barros da Silva, Angela Rynne-Vidal, Stephanie A. Maynard, Catherine S. Hansel, Clara Rodríguez-Fernández, Manuel M. Mazo, Amanda Y. F. You, Alex J. Wang, Thomas von Erlach, Karl Tryggvason, Manuel López-Cabrera, Molly M. Stevens
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/6f96d69568c34d5fb8957a8cd8f04a9a
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spelling oai:doaj.org-article:6f96d69568c34d5fb8957a8cd8f04a9a2021-12-02T15:39:00ZPreventing tissue fibrosis by local biomaterials interfacing of specific cryptic extracellular matrix information10.1038/ncomms155092041-1723https://doaj.org/article/6f96d69568c34d5fb8957a8cd8f04a9a2017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15509https://doaj.org/toc/2041-1723Matrix metalloproteinase enzymes are widely known to contribute to the breakdown of tissues. Here, the authors utilise a biomaterial substrate functionalised with a laminin fragment to modulate the expression of these enzymes, subsequently controlling the integrity of tissue.Christine-Maria HorejsJean-Philippe St-PierreJuha R. M. OjalaJoseph A. M. SteelePatricia Barros da SilvaAngela Rynne-VidalStephanie A. MaynardCatherine S. HanselClara Rodríguez-FernándezManuel M. MazoAmanda Y. F. YouAlex J. WangThomas von ErlachKarl TryggvasonManuel López-CabreraMolly M. StevensNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-15 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Christine-Maria Horejs
Jean-Philippe St-Pierre
Juha R. M. Ojala
Joseph A. M. Steele
Patricia Barros da Silva
Angela Rynne-Vidal
Stephanie A. Maynard
Catherine S. Hansel
Clara Rodríguez-Fernández
Manuel M. Mazo
Amanda Y. F. You
Alex J. Wang
Thomas von Erlach
Karl Tryggvason
Manuel López-Cabrera
Molly M. Stevens
Preventing tissue fibrosis by local biomaterials interfacing of specific cryptic extracellular matrix information
description Matrix metalloproteinase enzymes are widely known to contribute to the breakdown of tissues. Here, the authors utilise a biomaterial substrate functionalised with a laminin fragment to modulate the expression of these enzymes, subsequently controlling the integrity of tissue.
format article
author Christine-Maria Horejs
Jean-Philippe St-Pierre
Juha R. M. Ojala
Joseph A. M. Steele
Patricia Barros da Silva
Angela Rynne-Vidal
Stephanie A. Maynard
Catherine S. Hansel
Clara Rodríguez-Fernández
Manuel M. Mazo
Amanda Y. F. You
Alex J. Wang
Thomas von Erlach
Karl Tryggvason
Manuel López-Cabrera
Molly M. Stevens
author_facet Christine-Maria Horejs
Jean-Philippe St-Pierre
Juha R. M. Ojala
Joseph A. M. Steele
Patricia Barros da Silva
Angela Rynne-Vidal
Stephanie A. Maynard
Catherine S. Hansel
Clara Rodríguez-Fernández
Manuel M. Mazo
Amanda Y. F. You
Alex J. Wang
Thomas von Erlach
Karl Tryggvason
Manuel López-Cabrera
Molly M. Stevens
author_sort Christine-Maria Horejs
title Preventing tissue fibrosis by local biomaterials interfacing of specific cryptic extracellular matrix information
title_short Preventing tissue fibrosis by local biomaterials interfacing of specific cryptic extracellular matrix information
title_full Preventing tissue fibrosis by local biomaterials interfacing of specific cryptic extracellular matrix information
title_fullStr Preventing tissue fibrosis by local biomaterials interfacing of specific cryptic extracellular matrix information
title_full_unstemmed Preventing tissue fibrosis by local biomaterials interfacing of specific cryptic extracellular matrix information
title_sort preventing tissue fibrosis by local biomaterials interfacing of specific cryptic extracellular matrix information
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/6f96d69568c34d5fb8957a8cd8f04a9a
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