Cargando…

Nox2 Deficiency Reduces Cartilage Damage and Ectopic Bone Formation in an Experimental Model for Osteoarthritis

Osteoarthritis (OA) is a destructive disease of the joint with age and obesity being its most important risk factors. Around 50% of OA patients suffer from inflammation of the synovial joint capsule, which is characterized by increased abundance and activation of synovial macrophages that produce re...

Descripción completa

Detalles Bibliográficos
Autores principales: Kruisbergen, Nik N. L., Di Ceglie, Irene, van Gemert, Yvonne, Walgreen, Birgitte, Helsen, Monique M. A., Slöetjes, Annet W., Koenders, Marije I., van de Loo, Fons A. J., Roth, Johannes, Vogl, Thomas, van der Kraan, Peter M., Blom, Arjen B., van Lent, Peter L. E. M., van den Bosch, Martijn H. J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8614813/
https://www.ncbi.nlm.nih.gov/pubmed/34829531
http://dx.doi.org/10.3390/antiox10111660
_version_ 1784603951987949568
author Kruisbergen, Nik N. L.
Di Ceglie, Irene
van Gemert, Yvonne
Walgreen, Birgitte
Helsen, Monique M. A.
Slöetjes, Annet W.
Koenders, Marije I.
van de Loo, Fons A. J.
Roth, Johannes
Vogl, Thomas
van der Kraan, Peter M.
Blom, Arjen B.
van Lent, Peter L. E. M.
van den Bosch, Martijn H. J.
author_facet Kruisbergen, Nik N. L.
Di Ceglie, Irene
van Gemert, Yvonne
Walgreen, Birgitte
Helsen, Monique M. A.
Slöetjes, Annet W.
Koenders, Marije I.
van de Loo, Fons A. J.
Roth, Johannes
Vogl, Thomas
van der Kraan, Peter M.
Blom, Arjen B.
van Lent, Peter L. E. M.
van den Bosch, Martijn H. J.
author_sort Kruisbergen, Nik N. L.
collection PubMed
description Osteoarthritis (OA) is a destructive disease of the joint with age and obesity being its most important risk factors. Around 50% of OA patients suffer from inflammation of the synovial joint capsule, which is characterized by increased abundance and activation of synovial macrophages that produce reactive oxygen species (ROS) via NADPH-oxidase 2 (NOX2). Both ROS and high blood levels of low-density lipoprotein (LDL) are implicated in OA pathophysiology, which may interact to form oxidized LDL (oxLDL) and thereby promote disease. Therefore, targeting NOX2 could be a viable treatment strategy for OA. Collagenase-induced OA (CiOA) was used to compare pathology between wild-type (WT) and Nox2 knockout (Nox2(−/−)) C57Bl/6 mice. Mice were either fed a standard diet or Western diet (WD) to study a possible interaction between NOX2-derived ROS and LDL. Synovial inflammation, cartilage damage and ectopic bone size were assessed on histology. Extracellular ROS production by macrophages was measured in vitro using the Amplex Red assay. Nox2(−/−) macrophages produced basal levels of ROS but were unable to increase ROS production in response to the alarmin S100A8 or the phorbol ester PMA. Interestingly, Nox2 deficiency reduced cartilage damage, synovial lining thickness and ectopic bone size, whereas these disease parameters were not affected by WD-feeding. These results suggest that NOX2-derived ROS are involved in CiOA development.
format Online
Article
Text
id pubmed-8614813
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-86148132021-11-26 Nox2 Deficiency Reduces Cartilage Damage and Ectopic Bone Formation in an Experimental Model for Osteoarthritis Kruisbergen, Nik N. L. Di Ceglie, Irene van Gemert, Yvonne Walgreen, Birgitte Helsen, Monique M. A. Slöetjes, Annet W. Koenders, Marije I. van de Loo, Fons A. J. Roth, Johannes Vogl, Thomas van der Kraan, Peter M. Blom, Arjen B. van Lent, Peter L. E. M. van den Bosch, Martijn H. J. Antioxidants (Basel) Article Osteoarthritis (OA) is a destructive disease of the joint with age and obesity being its most important risk factors. Around 50% of OA patients suffer from inflammation of the synovial joint capsule, which is characterized by increased abundance and activation of synovial macrophages that produce reactive oxygen species (ROS) via NADPH-oxidase 2 (NOX2). Both ROS and high blood levels of low-density lipoprotein (LDL) are implicated in OA pathophysiology, which may interact to form oxidized LDL (oxLDL) and thereby promote disease. Therefore, targeting NOX2 could be a viable treatment strategy for OA. Collagenase-induced OA (CiOA) was used to compare pathology between wild-type (WT) and Nox2 knockout (Nox2(−/−)) C57Bl/6 mice. Mice were either fed a standard diet or Western diet (WD) to study a possible interaction between NOX2-derived ROS and LDL. Synovial inflammation, cartilage damage and ectopic bone size were assessed on histology. Extracellular ROS production by macrophages was measured in vitro using the Amplex Red assay. Nox2(−/−) macrophages produced basal levels of ROS but were unable to increase ROS production in response to the alarmin S100A8 or the phorbol ester PMA. Interestingly, Nox2 deficiency reduced cartilage damage, synovial lining thickness and ectopic bone size, whereas these disease parameters were not affected by WD-feeding. These results suggest that NOX2-derived ROS are involved in CiOA development. MDPI 2021-10-22 /pmc/articles/PMC8614813/ /pubmed/34829531 http://dx.doi.org/10.3390/antiox10111660 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kruisbergen, Nik N. L.
Di Ceglie, Irene
van Gemert, Yvonne
Walgreen, Birgitte
Helsen, Monique M. A.
Slöetjes, Annet W.
Koenders, Marije I.
van de Loo, Fons A. J.
Roth, Johannes
Vogl, Thomas
van der Kraan, Peter M.
Blom, Arjen B.
van Lent, Peter L. E. M.
van den Bosch, Martijn H. J.
Nox2 Deficiency Reduces Cartilage Damage and Ectopic Bone Formation in an Experimental Model for Osteoarthritis
title Nox2 Deficiency Reduces Cartilage Damage and Ectopic Bone Formation in an Experimental Model for Osteoarthritis
title_full Nox2 Deficiency Reduces Cartilage Damage and Ectopic Bone Formation in an Experimental Model for Osteoarthritis
title_fullStr Nox2 Deficiency Reduces Cartilage Damage and Ectopic Bone Formation in an Experimental Model for Osteoarthritis
title_full_unstemmed Nox2 Deficiency Reduces Cartilage Damage and Ectopic Bone Formation in an Experimental Model for Osteoarthritis
title_short Nox2 Deficiency Reduces Cartilage Damage and Ectopic Bone Formation in an Experimental Model for Osteoarthritis
title_sort nox2 deficiency reduces cartilage damage and ectopic bone formation in an experimental model for osteoarthritis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8614813/
https://www.ncbi.nlm.nih.gov/pubmed/34829531
http://dx.doi.org/10.3390/antiox10111660
work_keys_str_mv AT kruisbergenniknl nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT diceglieirene nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT vangemertyvonne nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT walgreenbirgitte nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT helsenmoniquema nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT sloetjesannetw nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT koendersmarijei nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT vandeloofonsaj nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT rothjohannes nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT voglthomas nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT vanderkraanpeterm nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT blomarjenb nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT vanlentpeterlem nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis
AT vandenboschmartijnhj nox2deficiencyreducescartilagedamageandectopicboneformationinanexperimentalmodelforosteoarthritis