Fluid shear stress‐induced osteoarthritis: roles of cyclooxygenase‐2 and its metabolic products in inducing the expression of proinflammatory cytokines and matrix metalloproteinases

The mechanical overloading of cartilage is involved in the pathophysiology of osteoarthritis (OA) by both biochemical and mechanical pathways. The application of fluid shear stress to chondrocytes recapitulates the earmarks of OA, as evidenced by the release of proinflammatory cytokines (PICs), matr...

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Veröffentlicht in:The FASEB journal 2013-12, Vol.27 (12), p.4664-4677
Hauptverfasser: Wang, Pu, Guan, Pei‐Pei, Guo, Chuang, Zhu, Fei, Konstantopoulos, Konstantinos, Wang, Zhan‐You
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container_end_page 4677
container_issue 12
container_start_page 4664
container_title The FASEB journal
container_volume 27
creator Wang, Pu
Guan, Pei‐Pei
Guo, Chuang
Zhu, Fei
Konstantopoulos, Konstantinos
Wang, Zhan‐You
description The mechanical overloading of cartilage is involved in the pathophysiology of osteoarthritis (OA) by both biochemical and mechanical pathways. The application of fluid shear stress to chondrocytes recapitulates the earmarks of OA, as evidenced by the release of proinflammatory cytokines (PICs), matrix metalloproteinases (MMPs), and apoptotic factors. Dysregulations or mutations in these genes might directly cause OA in addition to determining the stage at which OA becomes apparent, the joint sites involved, and the severity of the disease and how rapidly it progresses. However, the underlying mechanisms remain unknown. In this review, we propose that the dysregulation of cyclooxygenase‐2 (COX‐2) is associated with fluid shear stress‐induced OA via its metabolic products at different stages of the disease. Indeed, high fluid shear stress rapidly induces the production of PICs and MMPs via COX‐2‐derived prostaglandin (PG)E2 at the early stage of OA. In contrast, prolonged shear exposure (> 12 h) aggravates the condition by concurrently up‐regulating the expression of proapoptotic genes and down‐regulating the expression of antiapoptotic genes in a 15‐deoxy‐Δ(12,14)‐prostaglandin J2 (15d‐PGJ2)‐dependent manner at the late stage of disease. These observations may help to resolve long‐standing questions in OA progression and provide insight for development of strategies to treat and combat OA.—Wang, P., Guan, P.‐P., Guo, C., Zhu, F., Konstantopoulos, K., Wang, Z.‐W. Fluid shear stress‐induced osteoarthritis: roles of cyclooxygenase‐2 and its metabolic products in inducing the expression of proinflammatory cytokines and matrix metalloproteinases. FASEB J. 27, 4664–4677 (2013). www.fasebj.org
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The application of fluid shear stress to chondrocytes recapitulates the earmarks of OA, as evidenced by the release of proinflammatory cytokines (PICs), matrix metalloproteinases (MMPs), and apoptotic factors. Dysregulations or mutations in these genes might directly cause OA in addition to determining the stage at which OA becomes apparent, the joint sites involved, and the severity of the disease and how rapidly it progresses. However, the underlying mechanisms remain unknown. In this review, we propose that the dysregulation of cyclooxygenase‐2 (COX‐2) is associated with fluid shear stress‐induced OA via its metabolic products at different stages of the disease. Indeed, high fluid shear stress rapidly induces the production of PICs and MMPs via COX‐2‐derived prostaglandin (PG)E2 at the early stage of OA. In contrast, prolonged shear exposure (&gt; 12 h) aggravates the condition by concurrently up‐regulating the expression of proapoptotic genes and down‐regulating the expression of antiapoptotic genes in a 15‐deoxy‐Δ(12,14)‐prostaglandin J2 (15d‐PGJ2)‐dependent manner at the late stage of disease. These observations may help to resolve long‐standing questions in OA progression and provide insight for development of strategies to treat and combat OA.—Wang, P., Guan, P.‐P., Guo, C., Zhu, F., Konstantopoulos, K., Wang, Z.‐W. Fluid shear stress‐induced osteoarthritis: roles of cyclooxygenase‐2 and its metabolic products in inducing the expression of proinflammatory cytokines and matrix metalloproteinases. 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In contrast, prolonged shear exposure (&gt; 12 h) aggravates the condition by concurrently up‐regulating the expression of proapoptotic genes and down‐regulating the expression of antiapoptotic genes in a 15‐deoxy‐Δ(12,14)‐prostaglandin J2 (15d‐PGJ2)‐dependent manner at the late stage of disease. These observations may help to resolve long‐standing questions in OA progression and provide insight for development of strategies to treat and combat OA.—Wang, P., Guan, P.‐P., Guo, C., Zhu, F., Konstantopoulos, K., Wang, Z.‐W. Fluid shear stress‐induced osteoarthritis: roles of cyclooxygenase‐2 and its metabolic products in inducing the expression of proinflammatory cytokines and matrix metalloproteinases. 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subjects 15d‐PGJ2
Animals
apoptosis
chondrocytes
Cyclooxygenase 2 - metabolism
Cytokines - genetics
Cytokines - metabolism
Humans
inflammation
Matrix Metalloproteinases - genetics
Matrix Metalloproteinases - metabolism
Osteoarthritis - etiology
Osteoarthritis - metabolism
PGE2
Review
Stress, Mechanical
title Fluid shear stress‐induced osteoarthritis: roles of cyclooxygenase‐2 and its metabolic products in inducing the expression of proinflammatory cytokines and matrix metalloproteinases
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