Healy Zachary R, Lee Norman H, Gao Xiangqun, Goldring Mary B, Talalay Paul, Kensler Thomas W, Konstantopoulos Konstantinos
Department of Chemical and Biomolecular Engineering, The Johns Hopkins University, Baltimore, MD 21218, USA.
Proc Natl Acad Sci U S A. 2005 Sep 27;102(39):14010-5. doi: 10.1073/pnas.0506620102. Epub 2005 Sep 19.
Fluid shear exerts anti-inflammatory and anti-apoptotic effects on endothelial cells by inducing the coordinated expression of phase 2 detoxifying and antioxidant genes. In contrast, high shear is pro-apoptotic in chondrocytes and promotes matrix degradation and cartilage destruction. We have analyzed the mechanisms regulating shear-mediated chondrocyte apoptosis by cDNA microarray technology and bioinformatics. We demonstrate that shear-induced cyclooxygenase (COX)-2 suppresses phosphatidylinositol 3-kinase (PI3-K) activity, which represses antioxidant response element (ARE)/NF-E2 related factor 2 (Nrf2)-mediated transcriptional response in human chondrocytes. The resultant decrease in antioxidant capacity of sheared chondrocytes contributes to their apoptosis. Phase 2 inducers, and to a lesser extent COX-2-selective inhibitors, negate the shear-mediated suppression of ARE-driven phase 2 activity and apoptosis. The abrogation of shear-induced COX-2 expression by PI3-K activity and/or stimulation of the Nrf2/ARE pathway suggests the existence of PI3-K/Nrf2/ARE negative feedback loops that potentially interfere with c-Jun N-terminal kinase 2 activity upstream of COX-2. Reconstructing the signaling network regulating shear-induced chondrocyte apoptosis may provide insights to optimize conditions for culturing artificial cartilage in bioreactors and for developing therapeutic strategies for arthritic disorders.
流体剪切力通过诱导Ⅱ相解毒和抗氧化基因的协同表达,对内皮细胞发挥抗炎和抗凋亡作用。相反,高剪切力对软骨细胞具有促凋亡作用,并促进基质降解和软骨破坏。我们利用cDNA微阵列技术和生物信息学分析了调节剪切力介导的软骨细胞凋亡的机制。我们证明,剪切力诱导的环氧化酶(COX)-2抑制磷脂酰肌醇3激酶(PI3-K)活性,而PI3-K活性会抑制人软骨细胞中抗氧化反应元件(ARE)/NF-E2相关因子2(Nrf2)介导的转录反应。剪切力作用下软骨细胞抗氧化能力的下降导致了其凋亡。Ⅱ相诱导剂,以及程度较轻的COX-2选择性抑制剂,可消除剪切力介导的对ARE驱动的Ⅱ相活性和凋亡的抑制作用。PI3-K活性和/或Nrf2/ARE途径的刺激可消除剪切力诱导的COX-2表达,则提示存在PI3-K/Nrf2/ARE负反馈环,其可能在COX-2上游干扰c-Jun氨基末端激酶2的活性。重建调节剪切力诱导的软骨细胞凋亡的信号网络,可能为优化生物反应器中人工软骨的培养条件以及制定关节炎疾病的治疗策略提供思路。