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犬关节软骨中对机械损伤产生反应的基因:利用Affymetrix犬基因芯片进行的基因表达研究

Genes in canine articular cartilage that respond to mechanical injury: gene expression studies with Affymetrix canine GeneChip.

作者信息

Burton-Wurster N, Mateescu R G, Todhunter R J, Clements K M, Sun Q, Scarpino V, Lust G

机构信息

Baker Institute for Animal Health, Cornell University, Ithaca, NY 14853, USA. niw

出版信息

J Hered. 2005;96(7):821-8. doi: 10.1093/jhered/esi105. Epub 2005 Sep 8.

Abstract

The Affymetrix canine GeneChip with 23,836 probe sets was used to look for cartilage genes that are significantly altered in response to mechanical impact. The model using canine articular cartilage explants loaded in vitro has been described previously (Chen et al., J Orthop Res 19:703-711, 2001). It is our hypothesis that genes that are activated or repressed in articular cartilage after impact injury initiate cartilage degeneration, leading to osteoarthritis in dogs. Gene expression of known cartilage genes was generally consistent with cartilage biology. A total of 528 genes were significantly (P < .01) up- or down- regulated in response to mechanical damage. After applying the strict Bonferroni correction, 172 remained significantly affected. One of these genes, MIG-6/gene 33, was chosen for verification by real- time quantitative reverse transcriptase polymerase chain reaction (RT-PCR). A 3.8- fold increase in expression was confirmed, consistent with the microarray chip data. Deficiencies in the current annotation of the canine chip are discussed. Gene expression studies with the Affymetrix canine GeneChip are potentially valuable, but await more complete annotation.

摘要

使用带有23,836个探针组的Affymetrix犬类基因芯片来寻找因机械冲击而发生显著变化的软骨基因。使用体外加载犬关节软骨外植体的模型先前已有描述(Chen等人,《矫形外科学研究杂志》19:703 - 711,2001年)。我们的假设是,冲击损伤后在关节软骨中被激活或抑制的基因引发软骨退变,导致犬类骨关节炎。已知软骨基因的基因表达总体上与软骨生物学一致。共有528个基因因机械损伤而显著(P < 0.01)上调或下调。应用严格的Bonferroni校正后,仍有172个基因受到显著影响。其中一个基因,MIG - 6/基因33,被选择通过实时定量逆转录聚合酶链反应(RT - PCR)进行验证。证实其表达增加了3.8倍,与微阵列芯片数据一致。讨论了当前犬类芯片注释中的不足。使用Affymetrix犬类基因芯片进行的基因表达研究具有潜在价值,但有待更完整的注释。

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