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Changes in chondrocyte gene expression following in vitro impaction of porcine articular cartilage in an impact injury model

机译:抗冲击损伤模型中猪关节软骨体外刻录后软骨细胞基因表达的变化

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摘要

Our objective was to monitor chondrocyte gene expression at 0, 3, 7, and 14 days following in vitro impaction to the articular surface of porcine patellae. Patellar facets were either axially impacted with a cylindrical impactor (25 mm/s loading rate) to a load level of 2,000 N or not impacted to serve as controls. After being placed in organ culture for 0, 3, 7, or 14 days, total RNA was isolated from full thickness cartilage slices and gene expression measured for 17 genes by quantitative real-time RT-PCR. Targeted genes included those encoding proteins involved with biological stress, inflammation, or anabolism and catabolism of cartilage extracellular matrix. Some gene expression changes were detected on the day of impaction, but most significant changes occurred at 14 days in culture. At 14 days in culture, 10 of the 17 genes were differentially expressed with col1a1 most significantly up-regulated in the impacted samples, suggesting impacted chondrocytes may have reverted to a fibroblast-like phenotype.
机译:我们的目的是在体外侵入猪Patellae的关节表面,监测0,3,7和14天的软骨细胞基因表达。髌骨刻面轴向撞击圆柱形冲击器(25mm / s加载速率),载荷水平为2,000n或不受影响用作控制。在将器官培养物中置于0,3,7或14天后,通过定量实时RT-PCR从全厚软骨片和17个基因测量的全厚软骨切片和基因表达中分离出总RNA。靶向基因包括那些涉及生物应激,炎症或组织的编码蛋白质和软骨细胞外基质的分解代谢。在罚款的当天检测到一些基因表达变化,但在文化中最大的变化发生了14天。在培养14天时,17个基因中的10个基因中的10个与受冲击样品中最显着上调的COL1A1差异表达,表明抗肺细胞可能已恢复成纤维细胞状表型。

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