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Differential gene expression profiling of orbital adipose tissue in thyroid orbitopathy

机译:甲状腺眼眶病中眼眶脂肪组织的差异基因表达谱

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摘要

Purpose: We aimed to determine differentially expressed genes relevant to orbital inflammation and orbital fat expansion in thyroid orbitopathy (TO) using microarray gene profiling in a case-control study. Methods: Human orbital adipose samples were obtained from individuals with active TO (n = 12), inactive TO (n = 21), and normal controls (n = 21). Gene expression profiles were examined using microarray analysis and were compared between active and inactive TO, and between active TO and normal controls. Top ranked differentially expressed genes were validated by real-time RT-PCR in an additional eight active TO, 13 inactive TO, and 11 normal controls and correlated with gene set enrichment analysis (GSEA) and molecular pathways analysis. Results: Seven hundred twenty-one probes (683 genes) and 806 probes (735 genes) were significantly differentially expressed in comparing active to inactive TO and in comparing active TO to healthy controls, respectively. All selected genes were confirmed to be differentially expressed by real-time RT-PCR. Multiple top ranked genes in active versus inactive TO comparison are overrepresented by immune and inflammatory response genes. They include defensins (DEFA1, DEFA1B, DEFA3), which were overexpressed by 3.05- to 4.14-fold and TIMD4 by 4.20-fold. Markers for adipogenesis were overexpressed including SCD, FADS1, and SCDP1. Gene set enrichment analysis revealed dysregulation of epigenetic signatures, T-cell activation, Th1 differentiation, defensin pathway, cell adhesion, cytoskeleton organization, apoptosis, cell cycling, and lipid metabolism in active TO. Conclusions: Active TO is characterized by upregulation of genes involved in cell-mediated immune, innate immune, and inflammatory response and enhanced orbital adipogenesis. TIMD4, DEFA1, DEFA1B, and DEFA3 genes may be involved in the innate immune-mediated orbital inflammation in TO. Epigenetic mechanisms may play a role in the pathogenesis of TO.
机译:目的:我们旨在利用病例对照研究中的微阵列基因分析法,确定与甲状腺眶病(TO)中的眼眶炎症和眼眶脂肪扩张相关的差异表达基因。方法:从具有活跃TO(n = 12),非活跃TO(n = 21)和正常对照组(n = 21)的个体获得人类眼眶脂肪样品。使用微阵列分析检查了基因表达谱,并比较了有活性和无活性TO之间,以及有活性TO和正常对照之间。排名靠前的差异表达基因已通过实时RT-PCR在另外8个活性TO,13个非活性TO和11个正常对照中进行了验证,并与基因集富集分析(GSEA)和分子途径分析相关。结果:分别在将活动性TO与非活动性TO进行比较以及将活动性TO与健康对照进行比较时,显着差异表达了721个探针(683个基因)和806个探针(735个基因)。通过实时RT-PCR证实所有选择的基因均差异表达。免疫和炎症反应基因过度代表了活性和非活性TO比较中排名最高的基因。它们包括防御素(DEFA1,DEFA1B,DEFA3),它们的过表达率是3.05到4.14倍,而TIMD4则是4.20倍。脂肪形成的标志物过度表达,包括SCD,FADS1和SCDP1。基因集富集分析显示活性TO中表观遗传标记,T细胞活化,Th1分化,防御素途径,细胞粘附,细胞骨架组织,细胞凋亡,细胞周期和脂质代谢异常。结论:主动性TO的特征是上调参与细胞介导的免疫,先天免疫和炎症反应的基因,并增强眼眶脂肪形成。 TIMD4,DEFA1,DEFA1B和DEFA3基因可能与TO中先天性免疫介导的眼眶炎症有关。表观遗传机制可能在TO的发病机制中起作用。

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