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首页> 外文期刊>Genomics >Transcriptional profiling in alopecia areata defines immune and cell cycle control related genes within disease-specific signatures.
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Transcriptional profiling in alopecia areata defines immune and cell cycle control related genes within disease-specific signatures.

机译:斑秃的转录谱定义了疾病特异性特征内与免疫和细胞周期控制相关的基因。

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摘要

Alopecia areata (AA) is a non-scarring inflammatory hair loss disease with a complex autoimmune etiopathogenesis that is poorly understood. In order to investigate the pathogenesis of AA at the molecular level, we examined the gene expression profiles in skin samples from lesional (n=10) and non-lesional sites (n=10) of AA patients using Affymetrix Hu95A-v2 arrays. 363 genes were found to be differentially expressed in AA skin compared to non-lesional skin; 97 were up-regulated and 266 were down-regulated. Functional classification of the differentially expressed genes (DEGs) provides evidence for T-cell mediated immune response (CCL5, CXCL10, CD27, ICAM2, ICAM3, IL7R, and CX3CL1), and a possible humoral mechanism (IGHG3, IGHM, and CXCR5) in AA. We also find modulation in gene expression favoring cellular proliferation arrest at various levels (FGF5, FGF18, EREG, and FOXC2) with apoptotic dysregulation (LCK, TNF, TRAF2, and SFN) and decreased expression of hair follicle structural proteins. Further analysis of patients with AAT (<1 year duration, n=4) and AAP (>1 year duration, n=6) of disease revealed 262 DEGs distinctly separating the 2 groups, indicating the existence of gene profiles unique to the initial and later stages of disease.
机译:斑秃(AA)是一种非瘢痕性炎症性脱发疾病,具有复杂的自身免疫性病因,对此知之甚少。为了在分子水平上研究AA的发病机制,我们使用Affymetrix Hu95A-v2阵列检查了AA患者病灶(n = 10)和非病灶部位(n = 10)皮肤样品中的基因表达谱。发现与非病变皮肤相比,有363个基因在AA皮肤中差异表达。上调97个,下调266个。差异表达基因(DEG)的功能分类为T细胞介导的免疫反应(CCL5,CXCL10,CD27,ICAM2,ICAM3,IL7R和CX3CL1)提供了证据,并为可能的体液机制(IGHG3,IGHM和CXCR5)提供了证据。机管局。我们还发现基因表达的调节有利于细胞凋亡在各种水平(FGF5,FGF18,EREG和FOXC2)的抑制,并具有凋亡失调(LCK,TNF,TRAF2和SFN)并降低了毛囊结构蛋白的表达。对AAT(<1年病程,n = 4)和AAP(> 1年病程,n = 6)疾病的患者进行进一步分析,发现262个DEG分别将这两组分开,表明存在最初和最初的独特基因谱。疾病的后期。

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