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Gene expression profiles in the rat streptococcal cell wall-induced arthritis model identified using microarray analysis

机译:基因芯片在大鼠链球菌细胞壁诱导的关节炎模型中的基因表达谱

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摘要

Experimental arthritis models are considered valuable tools for delineating mechanisms of inflammation and autoimmune phenomena. Use of microarray-based methods represents a new and challenging approach that allows molecular dissection of complex autoimmune diseases such as arthritis. In order to characterize the temporal gene expression profile in joints from the reactivation model of streptococcal cell wall (SCW)-induced arthritis in Lewis (LEW/N) rats, total RNA was extracted from ankle joints from naïve, SCW injected, or phosphate buffered saline injected animals (time course study) and gene expression was analyzed using Affymetrix oligonucleotide microarray technology (RAE230A). After normalization and statistical analysis of data, 631 differentially expressed genes were sorted into clusters based on their levels and kinetics of expression using Spotfire® profile search and K-mean cluster analysis. Microarray-based data for a subset of genes were validated using real-time PCR TaqMan® analysis. Analysis of the microarray data identified 631 genes (441 upregulated and 190 downregulated) that were differentially expressed (Delta > 1.8, P < 0.01), showing specific levels and patterns of gene expression. The genes exhibiting the highest fold increase in expression on days -13.8, -13, or 3 were involved in chemotaxis, inflammatory response, cell adhesion and extracellular matrix remodelling. Transcriptome analysis identified 10 upregulated genes (Delta > 5), which have not previously been associated with arthritis pathology and are located in genomic regions associated with autoimmune disease. The majority of the downregulated genes were associated with metabolism, transport and regulation of muscle development. In conclusion, the present study describes the temporal expression of multiple disease-associated genes with potential pathophysiological roles in the reactivation model of SCW-induced arthritis in Lewis (LEW/N) rat. These findings improve our understanding of the molecular events that underlie the pathology in this animal model, which is potentially a valuable comparator to human rheumatoid arthritis (RA).
机译:实验性关节炎模型被认为是描绘炎症和自身免疫现象机制的有价值的工具。基于微阵列的方法的使用代表了一种新的具有挑战性的方法,该方法允许分子解剖复杂的自身免疫性疾病,例如关节炎。为了从Lewis(LEW / N)大鼠的链球菌细胞壁(SCW)诱发的关节炎的激活模型表征关节中的瞬时基因表达谱,从幼稚的踝关节提取总RNA,注射SCW或磷酸盐缓冲液注射盐水的动物(时程研究),并使用Affymetrix寡核苷酸微阵列技术(RAE230A)分析基因表达。在对数据进行归一化和统计分析之后,使用Spotfire ®谱图搜索和K-均值聚类分析,根据其表达水平和表达动力学将631个差异表达基因分类为聚类。使用实时PCR TaqMan ®分析验证了基因的一部分基于微阵列的数据。对微阵列数据的分析确定了差异表达(Delta> 1.8,P <0.01)的631个基因(441个上调和190个下调),显示了基因表达的特定水平和模式。在-13.8,-13或3天表现出最高的表达增加倍数的基因参与趋化性,炎症反应,细胞粘附和细胞外基质重塑。转录组分析确定了10个上调的基因(Delta> 5),这些基因以前与关节炎病理学无关,并且位于与自身免疫性疾病相关的基因组区域。大多数下调的基因与新陈代谢,运输和肌肉发育的调节有关。总之,本研究描述了在Lewis(LEW / N)大鼠SCW诱发的关节炎的再激活模型中具有潜在病理生理作用的多种疾病相关基因的时间表达。这些发现提高了我们对这种动物模型病理基础的分子事件的理解,这可能是类风湿关节炎(RA)的有价值的比较者。

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