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首页> 外文期刊>The journal of immunology >NF-κB Mediates the Stimulation of Cytokine and Chemokine Expression by Human Articular Chondrocytes in Response to Fibronectin Fragments
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NF-κB Mediates the Stimulation of Cytokine and Chemokine Expression by Human Articular Chondrocytes in Response to Fibronectin Fragments

机译:NF-κB介导人关节软骨细胞响应纤连蛋白片段的细胞因子和趋化因子表达的刺激。

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Fibronectin fragments (FN-f) that bind to the α5β1 integrin stimulate chondrocyte-mediated cartilage destruction and could play an important role in the progression of arthritis. The objective of this study was to identify potential cytokine mediators of cartilage inflammation and destruction induced by FN-f and to investigate the mechanism of their stimulation. Human articular chondrocytes, isolated from normal ankle cartilage obtained from tissue donors, were treated with a 110-kDa FN-f in serum-free culture, and expression of various cytokine genes was analyzed by cDNA microarray and by a cytokine protein array. Compared with untreated control cultures, stimulation by FN-f resulted in a 2-fold increase in IL-6, IL-8, MCP-1, and growth-related oncogene β (GRO-β). Constitutive and FN-f-inducible expression of GRO-α and GRO-γ were also noted by RT-PCR and confirmed by immunoblotting. Previous reports of IL-1β expression induced by FN-f were also confirmed, while TNF expression was found to be very low. Inhibitor studies revealed that FN-f-induced stimulation of chondrocyte chemokine expression was dependent on NF-κB activity, but independent of IL-1 autocrine signaling. The ability of FN-f to stimulate chondrocyte expression of multiple proinflammatory cytokines and chemokines suggests that damage to the cartilage matrix is capable of inducing a proinflammatory state responsible for further progressive matrix destruction, which also includes the chemoattraction of inflammatory cells. Targeting the signaling pathways activated by FN-f may be an effective means of inhibiting production of multiple mediators of cartilage destruction.
机译:与α5β1整联蛋白结合的纤连蛋白片段(FN-f)刺激软骨细胞介导的软骨破坏,并可能在关节炎的进展中发挥重要作用。本研究的目的是确定由FN-f诱导的软骨炎症和破坏的潜在细胞因子介体,并研究其刺激机制。分离自组织供体的正常踝软骨分离的人关节软骨细胞,在无血清培养物中用110 kDa FN-f处理,并通过cDNA微阵列和细胞因子蛋白阵列分析各种细胞因子基因的表达。与未处理的对照培养物相比,FN-f刺激导致IL-6,IL-8,MCP-1和生长相关癌基因β(GRO-β)的> 2倍增加。 RT-PCR还记录了GRO-α和GRO-γ的组成型和FN-f诱导表达,并通过免疫印迹得到证实。还证实了先前报道的由FN-f诱导的IL-1β表达,而发现TNF表达非常低。抑制剂研究表明,FN-f诱导的软骨细胞趋化因子表达刺激依赖于NF-κB活性,但独立于IL-1自分泌信号。 FN-f刺激多种促炎细胞因子和趋化因子的软骨细胞表达的能力表明,对软骨基质的损害能够诱导促炎状态,从而导致进一步的进行性基质破坏,其中还包括对炎症细胞的化学引诱。靶向由FN-f激活的信号通路可能是抑制多种软骨破坏介质产生的有效手段。

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