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Differential gene expression analysis in a rabbit model of osteoarthritis induced by anterior cruciate ligament (ACL) section

机译:前十字韧带(ACL)截面诱导骨关节炎兔模型中的差异基因表达分析

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Osteoarthritis (OA) is the most common of all joint diseases to affect mankind and is characterized by the degradation of articular cartilage. The low availability of normal and pathologic human cartilage and the inability to study the early stages of the disease in humans has led to the development of numerous animal models of OA. The aim of our study was to establish gene expression profiles during the progression of a rabbit model of OA induced by anterior cruciate ligament (ACL) section. Semiquantitative RT-PCR was used to follow expression of several relevant molecules (type II and X collagens, aggrecan, osteonectin,betaig-h3, BiP, TIMP-1, MMP-1, -3, -13, aggrecanase-1, -2) during development of OA in articular cartilage. In parallel, we monitored the activities of collagenase, caseinase, phospholipase A2 and glycosyltransferases (xylosyl-, galactosyl-, glucuronyl- and N-acetyl-galactosaminyl-transferase). Novel cDNA clones for rabbit type X collagen, aggrecanase-1 and -2, osteonectin and BiP were constructed to obtain species-specific primers. Ours result show that MMP-13 (collagenase-3) gene expression increased dramatically early after ACL surgery and remained high thereafter. An increase in MMP-1 (collagenase-1) and MMP-3 expression was also noted with an absence of variation for TIMP-1 expression. In addition, the global MMPs activities paralleled the MMP gene expression. These data together characterize at the molecular level the evolution of OA in this rabbit model. Furthermore, we have undertaken a search for identifying differentially expressed genes in normal and OA cartilage in this model, by differential display RT-PCR. We present here preliminary results with the determination of the best technical conditions to obtain reproducible electrophoresis patterns of differential display RT-PCR.
机译:骨关节炎(OA)是所有关节疾病中最常见的,以影响人类,其特征在于关节软骨的降解。正常和病理人类软骨的低可用性以及人类疾病的早期阶段的可行性导致了众多动物模型的OA。我们的研究目的是在由前十字韧带(ACL)部分诱导的OA兔模型的进展过程中建立基因表达谱。用于遵循几种相关分子的表达(II型和X胶原蛋白,骨髓,骨胶,Betaig-H3,BIP,TIMP-1,MMP-1,-3,-13,聚集酶-1,-2 )在关节软骨中的OA开发期间。并行,我们监测胶原酶,酪蛋白,磷脂脂酶A2和糖基转移酶的活性(木糖基,半乳糖基,葡糖醛糖基和N-乙酰基 - 半乳氨基酰基转移酶)。构建了兔型X型胶原蛋白,骨烷基酶-1和-2,骨升素和BIP的新型cDNA克隆以获得物种特异性引物。我们的结果表明,ACL手术后,MMP-13(胶原蛋白酶-3)基因表达急剧增加,其后保持高。还注意到MMP-1(胶原蛋白酶-1)和MMP-3表达的增加,没有TIMP-1表达的变化。此外,全球MMPS活动并联MMP基因表达。这些数据在一起表征在该兔模型中OA的演变。此外,我们通过差异显示RT-PCR进行了在该模型中识别正常和OA软骨中的差异表达基因的搜索。在这里展示初步结果,测定最佳技术条件,以获得差异显示RT-PCR的可重复的电泳模式。

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