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与肾功能下降和新发慢性肾脏病相关的循环代谢物:一项基于多平台人群的研究。

Circulating metabolites associated with kidney function decline and incident CKD: a multi-platform population-based study.

作者信息

van der Burgh Anna C, Geurts Sven, Ahmad Shahzad, Ikram M Arfan, Chaker Layal, Ferraro Pietro Manuel, Ghanbari Mohsen

机构信息

Department of Epidemiology, Erasmus University Medical Center, Rotterdam, The Netherlands.

Department of Internal Medicine, Erasmus University Medical Center, Rotterdam, The Netherlands.

出版信息

Clin Kidney J. 2023 Nov 16;17(1):sfad286. doi: 10.1093/ckj/sfad286. eCollection 2024 Jan.

Abstract

BACKGROUND

Investigation of circulating metabolites associated with kidney function and chronic kidney disease (CKD) risk could enhance our understanding of underlying pathways and identify new biomarkers for kidney function.

METHODS

We selected participants from the population-based Rotterdam Study with data on circulating metabolites and estimated glomerular filtration rate based on serum creatinine (eGFRcreat) available at the same time point. Data on eGFR based on serum cystatin C (eGFRcys) and urine albumin-to-creatinine ratio (ACR) were also included. CKD was defined as eGFRcreat <60 ml/min per 1.73 m. Data on circulating metabolites (n = 1381) was obtained from the Nightingale and Metabolon platform. Linear regression, linear mixed, and Cox proportional-hazards regression analyses were conducted to study the associations between metabolites and kidney function. We performed bidirectional two-sample Mendelian randomization analyses to investigate causality of the identified associations.

RESULTS

We included 3337 and 1540 participants with data from Nightingale and Metabolon, respectively. A total of 1381 metabolites (243 from Nightingale and 1138 from Metabolon) were included in the analyses. A large number of metabolites were significantly associated with eGFRcreat, eGFRcys, ACR, and CKD, including 16 metabolites that were associated with all four outcomes. Among these, C-glycosyltryptophan (HR 1.50, 95%CI 1.31;1.71) and X-12026 (HR 1.46, 95%CI 1.26;1.68) were most strongly associated with CKD risk. We revealed sex differences in the associations of 11-ketoetiocholanolone glucuronide and 11-beta-glucuronide with the kidney function assessments. No causal associations between the identified metabolites and kidney function were observed.

CONCLUSION

Our study indicates that several circulating metabolites are associated with kidney function which are likely to have potential as biomarkers, rather than as molecules involved in the pathophysiology of kidney function decline.

摘要

背景

研究与肾功能及慢性肾脏病(CKD)风险相关的循环代谢物,有助于加深我们对潜在机制的理解,并识别新的肾功能生物标志物。

方法

我们从基于人群的鹿特丹研究中选取参与者,他们同时拥有循环代谢物数据以及基于血清肌酐估算的肾小球滤过率(eGFRcreat)。还纳入了基于血清胱抑素C的eGFR(eGFRcys)和尿白蛋白与肌酐比值(ACR)的数据。CKD定义为eGFRcreat <60 ml/min/1.73 m²。循环代谢物数据(n = 1381)来自夜莺平台和Metabolon平台。进行线性回归、线性混合和Cox比例风险回归分析,以研究代谢物与肾功能之间的关联。我们进行了双向双样本孟德尔随机化分析,以研究已识别关联的因果关系。

结果

我们分别纳入了来自夜莺平台的3337名参与者和来自Metabolon平台的1540名参与者。分析共纳入了1381种代谢物(243种来自夜莺平台,1138种来自Metabolon平台)。大量代谢物与eGFRcreat、eGFRcys、ACR和CKD显著相关,其中16种代谢物与所有这四项指标均相关。其中,C-糖基色氨酸(HR 1.50,95%CI 1.31;1.71)和X-12026(HR 1.46,95%CI 1.26;1.68)与CKD风险的关联最为强烈。我们发现11-酮基雄甾烷醇葡萄糖醛酸和11-β-葡萄糖醛酸与肾功能评估的关联存在性别差异。未观察到已识别的代谢物与肾功能之间存在因果关联。

结论

我们的研究表明,几种循环代谢物与肾功能相关,这些代谢物可能有潜力作为生物标志物,而非参与肾功能下降病理生理学过程的分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c0e/10783258/43384e25e3f9/sfad286fig1.jpg

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