Department of Chemical and Biomolecular Engineering, The Johns Hopkins University, Baltimore, Maryland 21218, USA.
J Biol Chem. 2012 Sep 14;287(38):31877-93. doi: 10.1074/jbc.M112.362731. Epub 2012 Jul 24.
Mechanical overloading of articular cartilage producing hydrostatic stress, tensile strain, and fluid flow results in irreversible cartilage erosion and osteoarthritis (OA). Application of high fluid shear to chondrocytes recapitulates the earmarks of OA as evidenced by the induction of proinflammatory cytokines and prostaglandins, which are capable of inducing the expression of matrix-degrading enzymes. Matrix metalloproteinase-9 (MMP-9) synthesis is detected at early but not late stages of OA. However, the underlying mechanism(s) of the MMP-9 temporal regulation remains unknown. Using the T/C-28a2 chondrocyte cell line as a model system, we demonstrated that high fluid shear induces a marked increase in MMP-9 expression at short shear exposure times (3-6 h), which falls below basal levels after prolonged shear exposure (12-48 h). High fluid shear stress induced the rapid and sustained synthesis of IL-1β, activating PI3K, ERK1/2, and JNK, which are in turn responsible for MMP-9 expression. Prolonged shear exposure (>12 h) induced 15-deoxy-Δ(12,14)-prostaglandin J(2) (15d-PGJ(2)) synthesis, which exerted an antagonistic effect on IL-1β-mediated PI3K-, ERK1/2-, and JNK-dependent NF-κB activation, thereby suppressing MMP-9 expression in human chondrocytes. Reconstructing the signaling network that regulates shear-mediated MMP-9 expression in human chondrocytes may provide insights for developing strategies to treat arthritic disorders.
关节软骨的机械性过载导致静水压力、拉伸应变和流体流动,从而导致不可逆转的软骨侵蚀和骨关节炎(OA)。向软骨细胞施加高流体剪切力可重现 OA 的特征,表现为促炎细胞因子和前列腺素的诱导,这些物质能够诱导基质降解酶的表达。基质金属蛋白酶-9(MMP-9)的合成在 OA 的早期而不是晚期阶段被检测到。然而,MMP-9 时间调节的潜在机制尚不清楚。使用 T/C-28a2 软骨细胞系作为模型系统,我们证明高流体剪切力在短剪切暴露时间(3-6 小时)下会显著增加 MMP-9 的表达,而在长时间剪切暴露(12-48 小时)后,其表达会降至基础水平以下。高流体剪切应力诱导 IL-1β 的快速和持续合成,激活 PI3K、ERK1/2 和 JNK,这些酶反过来又负责 MMP-9 的表达。长时间的剪切暴露(>12 小时)会诱导 15-脱氧-Δ(12,14)-前列腺素 J(2)(15d-PGJ(2))的合成,它对 IL-1β 介导的 PI3K、ERK1/2 和 JNK 依赖性 NF-κB 激活产生拮抗作用,从而抑制人软骨细胞中 MMP-9 的表达。重建调节人软骨细胞中剪切介导的 MMP-9 表达的信号网络,可能为开发治疗关节炎疾病的策略提供思路。