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Chemokine expression is upregulated in chondrocytes in diabetic fracture healing

机译:糖尿病骨折愈合中软骨细胞趋化因子的表达上调

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Chemokines are thought to play an important role in several aspects of bone metabolism including the recruitment of leukocytes and the formation of osteoclasts. We investigated the impact of diabetes on chemokine expression in normal and diabetic fracture healing. Fracture of the femur was performed in streptozotocin-induced diabetic and matched normoglycemic control mice. Microarray analysis was carried out and chemokine mRNA levels in vivo were assessed. CCL4 were examined in fracture calluses by immunohistochemistry and the role of TNF in diabetes-enhanced expression was investigated by treatment of animals with the TNF-specific inhibitor, pegsunercept. In vitro studies were conducted with ATDC5 chondrocytes. Diabetes significantly upregulated mRNA levels of several chemokines in vivo including CCL4, CCL8, CCL6, CCL11, CCL20, CCL24, CXCL2, CXCL5 and chemokine receptors CCR5 and CXCR4. Chondrocytes were identified as a significant source of CCL4 and its expression in diabetic fractures was dependent on TNF (P < 0.05). TNF-?? significantly increased mRNA levels of several chemokines in vitro which were knocked down with FOXO1 siRNA (P < 0.05). CCL4 expression at the mRNA and proteins levels was induced by FOXO1 over-expression and reduced by FOXO1 knockdown. The current studies point to the importance of TNF-?? as a mechanism for diabetes enhanced chemokine expression by chondrocytes, which may contribute to the accelerated loss of cartilage observed in diabetic fracture healing. Moreover, in vitro results point to FOXO1 as a potentially important transcription factor in mediating this effect. ? 2012 Elsevier Inc.
机译:人们认为趋化因子在骨骼代谢的几个方面起着重要作用,包括白细胞的募集和破骨细胞的形成。我们调查了糖尿病对正常和糖尿病性骨折愈合中趋化因子表达的影响。在链脲佐菌素诱导的糖尿病和配对的正常血糖对照小鼠中进行股骨骨折。进行微阵列分析并评估体内趋化因子mRNA水平。通过免疫组织化学检查CCL4在骨折老茧中的表达,并通过用TNF特异性抑制剂pegsunercept治疗动物来研究TNF在糖尿病增强表达中的作用。用ATDC5软骨细胞进行了体外研究。糖尿病在体内显着上调了几种趋化因子的mRNA水平,包括CCL4,CCL8,CCL6,CCL11,CCL20,CCL24,CXCL2,CXCL5和趋化因子受体CCR5和CXCR4。软骨细胞被认为是CCL4的重要来源,其在糖尿病性骨折中的表达取决于TNF(P <0.05)。肿瘤坏死因子FOXO1 siRNA可以显着提高体外几种趋化因子的mRNA水平(P <0.05)。 FCLO1过表达诱导CCL4在mRNA和蛋白水平上的表达,而FOXO1敲低则降低了CCL4的表达。目前的研究指出了TNF-α的重要性。作为糖尿病的一种机制,软骨细胞增强了趋化因子的表达,这可能有助于加速糖尿病性骨折愈合中观察到的软骨丧失。此外,体外结果表明FOXO1是介导这种作用的潜在重要转录因子。 ? 2012爱思唯尔公司

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