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基于 DNAm 的衰老加速和血液中死亡率的生物标志物与肾功能低下有关。

DNAm-based signatures of accelerated aging and mortality in blood are associated with low renal function.

机构信息

TUM School of Medicine, Technical University of Munich, Munich, Germany.

Research Unit Molecular Epidemiology, Institute of Epidemiology, Helmholtz Zentrum München, German Research Center for Environmental Health, Munich/Neuherberg, Germany.

出版信息

Clin Epigenetics. 2021 Jun 2;13(1):121. doi: 10.1186/s13148-021-01082-w.

Abstract

BACKGROUND

The difference between an individual's chronological and DNA methylation predicted age (DNAmAge), termed DNAmAge acceleration (DNAmAA), can capture life-long environmental exposures and age-related physiological changes reflected in methylation status. Several studies have linked DNAmAA to morbidity and mortality, yet its relationship with kidney function has not been assessed. We evaluated the associations between seven DNAm aging and lifespan predictors (as well as GrimAge components) and five kidney traits (estimated glomerular filtration rate [eGFR], urine albumin-to-creatinine ratio [uACR], serum urate, microalbuminuria and chronic kidney disease [CKD]) in up to 9688 European, African American and Hispanic/Latino individuals from seven population-based studies.

RESULTS

We identified 23 significant associations in our large trans-ethnic meta-analysis (p < 1.43E-03 and consistent direction of effect across studies). Age acceleration measured by the Extrinsic and PhenoAge estimators, as well as Zhang's 10-CpG epigenetic mortality risk score (MRS), were associated with all parameters of poor kidney health (lower eGFR, prevalent CKD, higher uACR, microalbuminuria and higher serum urate). Six of these associations were independently observed in European and African American populations. MRS in particular was consistently associated with eGFR (β =  - 0.12, 95% CI = [- 0.16, - 0.08] change in log-transformed eGFR per unit increase in MRS, p = 4.39E-08), prevalent CKD (odds ratio (OR) = 1.78 [1.47, 2.16], p = 2.71E-09) and higher serum urate levels (β = 0.12 [0.07, 0.16], p = 2.08E-06). The "first-generation" clocks (Hannum, Horvath) and GrimAge showed different patterns of association with the kidney traits. Three of the DNAm-estimated components of GrimAge, namely adrenomedullin, plasminogen-activation inhibition 1 and pack years, were positively associated with higher uACR, serum urate and microalbuminuria.

CONCLUSION

DNAmAge acceleration and DNAm mortality predictors estimated in whole blood were associated with multiple kidney traits, including eGFR and CKD, in this multi-ethnic study. Epigenetic biomarkers which reflect the systemic effects of age-related mechanisms such as immunosenescence, inflammaging and oxidative stress may have important mechanistic or prognostic roles in kidney disease. Our study highlights new findings linking kidney disease to biological aging, and opportunities warranting future investigation into DNA methylation biomarkers for prognostic or risk stratification in kidney disease.

摘要

背景

个体的实际年龄和 DNA 甲基化预测年龄(DNAmAge)之间的差异,称为 DNAmAge 加速(DNAmAA),可以捕捉到一生中的环境暴露和甲基化状态反映的与年龄相关的生理变化。一些研究已经将 DNAmAA 与发病率和死亡率联系起来,但它与肾功能的关系尚未得到评估。我们评估了七种 DNAm 衰老和寿命预测因子(以及 GrimAge 成分)与五种肾脏特征(估计肾小球滤过率[eGFR]、尿白蛋白与肌酐比[uACR]、血清尿酸、微量白蛋白尿和慢性肾脏病[CKD])之间的关联,这些特征来自七个基于人群的研究中多达 9688 名欧洲人、非裔美国人和西班牙裔/拉丁裔个体。

结果

在我们的大型跨种族荟萃分析中,我们发现了 23 个具有统计学意义的关联(p<1.43E-03 且研究间效应方向一致)。由外在和 PhenoAge 估算器测量的年龄加速,以及 Zhang 的 10-CpG 表观遗传死亡率风险评分(MRS),与所有反映肾脏健康状况不佳的参数均相关(较低的 eGFR、普遍存在的 CKD、较高的 uACR、微量白蛋白尿和较高的血清尿酸)。这些关联中有 6 个在欧洲人和非裔美国人中独立观察到。MRS 尤其与 eGFR 呈一致关联(β=−0.12,95%CI=−0.16,−0.08,每单位 MRS 增加导致 eGFR 的对数转换减少 0.12,p=4.39E-08)、普遍存在的 CKD(比值比(OR)=1.78[1.47,2.16],p=2.71E-09)和较高的血清尿酸水平(β=0.12[0.07,0.16],p=2.08E-06)。“第一代”时钟(Hannum、Horvath)和 GrimAge 与肾脏特征的关联模式不同。GrimAge 的三个 DNAm 估计成分,即肾上腺髓质素、纤溶酶原激活物抑制物 1 和吸烟年数,与较高的 uACR、血清尿酸和微量白蛋白尿呈正相关。

结论

在这项多民族研究中,全血中估计的 DNAmAge 加速和 DNAm 死亡率预测因子与多种肾脏特征相关,包括 eGFR 和 CKD。反映与年龄相关的免疫衰老、炎症老化和氧化应激等机制的系统性影响的表观遗传生物标志物可能在肾脏疾病的发病机制或预后方面具有重要的作用。我们的研究强调了将肾脏疾病与生物衰老联系起来的新发现,并为未来研究 DNA 甲基化生物标志物在肾脏疾病中的预后或风险分层提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ba2/8170969/a2d9d76aa3bf/13148_2021_1082_Fig1_HTML.jpg

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