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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Nature Portfolio
2017
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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) |
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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 |
work_keys_str_mv |
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1718385994399481856 |