Epigenetic Aging and Rheumatoid Arthritis.

IF 4.3 2区 医学 Q1 GERIATRICS & GERONTOLOGY
Nandini Mukherjee, Tracie C Harrison
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引用次数: 0

Abstract

This is the first known comparative assessment of the associations of epigenetic age estimates with the prevalence of rheumatoid arthritis (RA). We used data available in Gene Expression Omnibus (GSE42861) from the Swedish Epidemiological Investigation of Rheumatoid Arthritis study. Information regarding RA diagnosis and 450K DNA methylation (DNAm) of 18- to 70-year-old participants was available. Utilizing Horvath's online DNAm Age Calculator, we determined the DNAm estimate of Telomere length (DNAmTL), Hannum's epigenetic age, Horvath's 2013 and 2018 epigenetic ages, PhenoAge, GrimAge, and the respective age-acceleration measures. The association of RA prevalence with epigenetic age measures was assessed using linear regression, adjusting for sex and smoking status. The p values were corrected for multiple testing using a false discovery rate. We identified statistically significant associations of RA with Horvath 2013 age acceleration (estimate: -1.34; FDR p value: 1.0 × 10-2), Horvath 2018 age acceleration (estimate: -1.32; FDR p value: 4.0 × 10-5), extrinsic age acceleration (estimate: 1.34; FDR p value: 1.0 × 10-2), PhenoAge acceleration (estimate: 2.31; FDR p value: 1.1 × 10-5), GrimAge (estimate: 2.54; FDR p value: 1.0 × 10-2), and GrimAge acceleration (estimate: 3.15; FDR p-value: 1.7 × 10-17). Of note, the raw and age-adjusted GrimAge surrogate DNAm protein components were significantly higher in RA cases than controls. Interestingly, the first-generation measures were associated only with women. No sex-specific effects were identified for PhenoAge or GrimAge accelerations. In this cross-sectional assessment, the second-generation clocks show promise as markers of biological aging, with higher epigenetic age acceleration observed in RA cases compared with healthy controls.

表观遗传老化与类风湿关节炎。
这是首次对表观遗传年龄估计值与类风湿性关节炎(RA)患病率之间的关系进行比较评估。我们使用了瑞典类风湿性关节炎流行病学调查研究的基因表达总库(GSE42861)中的数据。我们获得了 18 至 70 岁参与者的类风湿关节炎诊断信息和 450K DNA 甲基化(DNAm)信息。利用 Horvath 的在线 DNAm 年龄计算器,我们确定了端粒长度的 DNAm 估计值(DNAmTL)、Hannum 的表观遗传年龄、Horvath 的 2013 年和 2018 年表观遗传年龄、PhenoAge、GrimAge 以及相应的年龄加速测量值。采用线性回归评估了RA患病率与表观遗传年龄测量值之间的关联,并对性别和吸烟状况进行了调整。使用假发现率对多重检验的 p 值进行了校正。我们发现 RA 与 Horvath 2013 年龄加速度(估计值:-1.34;FDR p 值:1.0 × 10-2)、Horvath 2018 年龄加速度(估计值:-1.32;FDR p 值:4.0 × 10-5)、外在年龄加速度(估计值:1.34;FDR p 值:1.0 × 10-2)、PhenoAge 加速(估计值:2.31;FDR p 值:1.1 × 10-5)、GrimAge(估计值:2.54;FDR p 值:1.0 × 10-2)、GrimAge 加速(估计值:3.15;FDR p 值:1.7 × 10-17)。值得注意的是,RA 病例的原始和年龄调整后的 GrimAge 代 DNAm 蛋白成分明显高于对照组。有趣的是,第一代指标仅与女性相关。在 PhenoAge 或 GrimAge 加速方面没有发现性别特异性影响。在这项横断面评估中,第二代时钟显示出作为生物衰老标记物的前景,与健康对照组相比,在RA病例中观察到更高的表观遗传年龄加速度。
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来源期刊
CiteScore
10.00
自引率
5.90%
发文量
233
审稿时长
3-8 weeks
期刊介绍: Publishes articles representing the full range of medical sciences pertaining to aging. Appropriate areas include, but are not limited to, basic medical science, clinical epidemiology, clinical research, and health services research for professions such as medicine, dentistry, allied health sciences, and nursing. It publishes articles on research pertinent to human biology and disease.
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