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Matriptase Induction of Metalloproteinase‐Dependent Aggrecanolysis In Vitro and In Vivo: Promotion of Osteoarthritic Cartilage Damage by Multiple Mechanisms

OBJECTIVE: To assess the ability of matriptase, a type II transmembrane serine proteinase, to promote aggrecan loss from the cartilage of patients with osteoarthritis (OA) and to determine whether its inhibition can prevent aggrecan loss and cartilage damage in experimental OA. METHODS: Aggrecan rel...

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Autores principales: Wilkinson, David J., Habgood, Angela, Lamb, Heather K., Thompson, Paul, Hawkins, Alastair R., Désilets, Antoine, Leduc, Richard, Steinmetzer, Torsten, Hammami, Maya, Lee, Melody S., Craik, Charles S., Watson, Sharon, Lin, Hua, Milner, Jennifer M., Rowan, Andrew D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5599990/
https://www.ncbi.nlm.nih.gov/pubmed/28464560
http://dx.doi.org/10.1002/art.40133
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author Wilkinson, David J.
Habgood, Angela
Lamb, Heather K.
Thompson, Paul
Hawkins, Alastair R.
Désilets, Antoine
Leduc, Richard
Steinmetzer, Torsten
Hammami, Maya
Lee, Melody S.
Craik, Charles S.
Watson, Sharon
Lin, Hua
Milner, Jennifer M.
Rowan, Andrew D.
author_facet Wilkinson, David J.
Habgood, Angela
Lamb, Heather K.
Thompson, Paul
Hawkins, Alastair R.
Désilets, Antoine
Leduc, Richard
Steinmetzer, Torsten
Hammami, Maya
Lee, Melody S.
Craik, Charles S.
Watson, Sharon
Lin, Hua
Milner, Jennifer M.
Rowan, Andrew D.
author_sort Wilkinson, David J.
collection PubMed
description OBJECTIVE: To assess the ability of matriptase, a type II transmembrane serine proteinase, to promote aggrecan loss from the cartilage of patients with osteoarthritis (OA) and to determine whether its inhibition can prevent aggrecan loss and cartilage damage in experimental OA. METHODS: Aggrecan release from human OA cartilage explants and human stem cell–derived cartilage discs was evaluated, and cartilage‐conditioned media were used for Western blotting. Gene expression was analyzed by real‐time polymerase chain reaction. Murine OA was induced by surgical destabilization of the medial meniscus, and matriptase inhibitors were administered via osmotic minipump or intraarticular injection. Cartilage damage was scored histologically and aggrecan cleavage was visualized immunohistochemically using specific neoepitope antibodies. RESULTS: The addition of soluble recombinant matriptase promoted a time‐dependent release of aggrecan (and collagen) from OA cartilage, which was sensitive to metalloproteinase inhibition and protease‐activated receptor 2 antagonism. Although engineered human (normal) cartilage discs failed to release aggrecan following matriptase addition, both matrix metalloproteinase– and aggrecanase‐mediated cleavages of aggrecan were detected in human OA cartilage. Additionally, while matriptase did not directly degrade aggrecan, it promoted the accumulation of low‐density lipoprotein receptor–related protein 1 (LRP‐1) in conditioned media of the OA cartilage explants. Matriptase inhibition via neutralizing antibody or small molecule inhibitor significantly reduced cartilage damage scores in murine OA, which was associated with reduced generation of metalloproteinase‐mediated aggrecan cleavage. CONCLUSION: Matriptase potently induces the release of metalloproteinase‐generated aggrecan fragments as well as soluble LRP‐1 from OA cartilage. Therapeutic targeting of matriptase proteolytic activity reduces metalloproteinase activity, further suggesting that this serine proteinase may have potential as a disease‐modifying therapy in OA.
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spelling pubmed-55999902017-10-02 Matriptase Induction of Metalloproteinase‐Dependent Aggrecanolysis In Vitro and In Vivo: Promotion of Osteoarthritic Cartilage Damage by Multiple Mechanisms Wilkinson, David J. Habgood, Angela Lamb, Heather K. Thompson, Paul Hawkins, Alastair R. Désilets, Antoine Leduc, Richard Steinmetzer, Torsten Hammami, Maya Lee, Melody S. Craik, Charles S. Watson, Sharon Lin, Hua Milner, Jennifer M. Rowan, Andrew D. Arthritis Rheumatol Osteoarthritis OBJECTIVE: To assess the ability of matriptase, a type II transmembrane serine proteinase, to promote aggrecan loss from the cartilage of patients with osteoarthritis (OA) and to determine whether its inhibition can prevent aggrecan loss and cartilage damage in experimental OA. METHODS: Aggrecan release from human OA cartilage explants and human stem cell–derived cartilage discs was evaluated, and cartilage‐conditioned media were used for Western blotting. Gene expression was analyzed by real‐time polymerase chain reaction. Murine OA was induced by surgical destabilization of the medial meniscus, and matriptase inhibitors were administered via osmotic minipump or intraarticular injection. Cartilage damage was scored histologically and aggrecan cleavage was visualized immunohistochemically using specific neoepitope antibodies. RESULTS: The addition of soluble recombinant matriptase promoted a time‐dependent release of aggrecan (and collagen) from OA cartilage, which was sensitive to metalloproteinase inhibition and protease‐activated receptor 2 antagonism. Although engineered human (normal) cartilage discs failed to release aggrecan following matriptase addition, both matrix metalloproteinase– and aggrecanase‐mediated cleavages of aggrecan were detected in human OA cartilage. Additionally, while matriptase did not directly degrade aggrecan, it promoted the accumulation of low‐density lipoprotein receptor–related protein 1 (LRP‐1) in conditioned media of the OA cartilage explants. Matriptase inhibition via neutralizing antibody or small molecule inhibitor significantly reduced cartilage damage scores in murine OA, which was associated with reduced generation of metalloproteinase‐mediated aggrecan cleavage. CONCLUSION: Matriptase potently induces the release of metalloproteinase‐generated aggrecan fragments as well as soluble LRP‐1 from OA cartilage. Therapeutic targeting of matriptase proteolytic activity reduces metalloproteinase activity, further suggesting that this serine proteinase may have potential as a disease‐modifying therapy in OA. John Wiley and Sons Inc. 2017-07-05 2017-08 /pmc/articles/PMC5599990/ /pubmed/28464560 http://dx.doi.org/10.1002/art.40133 Text en © 2017 The Authors. Arthritis & Rheumatology published by Wiley Periodicals, Inc. on behalf of American College of Rheumatology. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Osteoarthritis
Wilkinson, David J.
Habgood, Angela
Lamb, Heather K.
Thompson, Paul
Hawkins, Alastair R.
Désilets, Antoine
Leduc, Richard
Steinmetzer, Torsten
Hammami, Maya
Lee, Melody S.
Craik, Charles S.
Watson, Sharon
Lin, Hua
Milner, Jennifer M.
Rowan, Andrew D.
Matriptase Induction of Metalloproteinase‐Dependent Aggrecanolysis In Vitro and In Vivo: Promotion of Osteoarthritic Cartilage Damage by Multiple Mechanisms
title Matriptase Induction of Metalloproteinase‐Dependent Aggrecanolysis In Vitro and In Vivo: Promotion of Osteoarthritic Cartilage Damage by Multiple Mechanisms
title_full Matriptase Induction of Metalloproteinase‐Dependent Aggrecanolysis In Vitro and In Vivo: Promotion of Osteoarthritic Cartilage Damage by Multiple Mechanisms
title_fullStr Matriptase Induction of Metalloproteinase‐Dependent Aggrecanolysis In Vitro and In Vivo: Promotion of Osteoarthritic Cartilage Damage by Multiple Mechanisms
title_full_unstemmed Matriptase Induction of Metalloproteinase‐Dependent Aggrecanolysis In Vitro and In Vivo: Promotion of Osteoarthritic Cartilage Damage by Multiple Mechanisms
title_short Matriptase Induction of Metalloproteinase‐Dependent Aggrecanolysis In Vitro and In Vivo: Promotion of Osteoarthritic Cartilage Damage by Multiple Mechanisms
title_sort matriptase induction of metalloproteinase‐dependent aggrecanolysis in vitro and in vivo: promotion of osteoarthritic cartilage damage by multiple mechanisms
topic Osteoarthritis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5599990/
https://www.ncbi.nlm.nih.gov/pubmed/28464560
http://dx.doi.org/10.1002/art.40133
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