Evaluation of the multicenter variations of urinary metabolomics

Jing Li , Haidan Sun , Xiaoyan Liu , Qinghong Shi , Lu He , Yulin Sun , Chengyan He , Yajie Wang , Xiaohang Zhao , Lihua Fan , Zhengguang Guo , Shirley X. Tsang , Wei Sun
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引用次数: 4

Abstract

Background

Multicenter experiments have frequently been performed in clinical biomarker studies. However, center effects should not be ignored. In this study, for the first time,we estimated the multicenter variations of the urinary metabolome in China.

Methods

In this study, midstream urine samples from a total of 83 healthy individuals were collected in four centers in Beijing and Changchun. Liquid chromatography-high resolution mass spectrometry -based metabolomics was used to analyze the differences among the four centers.

Results

Within the same city, there were significant variations in the urinary metabolome among the three centers. Different centers had unique differential metabolites. Amino acids, N-acetylglucosamine, glutathione, and NAD metabolism contributed to the multicenter variation. The metabolomics variation between Beijing and Changchun was obviously higher than that within the same city (Beijing). The variations between Beijing and Changchun were associated with tetrapyrrole metabolism, hememetabolism, and eicosanoid signaling.

Conclusions

This study provides insights into the center and regional effect of the urinary metabolome in China. Our results might benefit the experimental design of multicenter urinary metabolome research in the clinic.

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尿代谢组学多中心变异的评价
临床生物标志物研究中经常进行多中心实验。然而,中心效应不应该被忽视。在这项研究中,我们首次估计了中国尿代谢组的多中心变异。方法在北京和长春4个中心采集83例健康人中游尿液样本。采用液相色谱-高分辨率质谱代谢组学分析4个中心之间的差异。结果在同一城市内,三个中心的尿代谢组存在显著差异。不同的中心有独特的代谢物差异。氨基酸、n -乙酰氨基葡萄糖、谷胱甘肽和NAD代谢导致了多中心变异。北京和长春的代谢组学差异明显高于同一城市(北京)内的差异。北京和长春之间的差异与四吡咯代谢、血液代谢和类二十烷信号传导有关。结论本研究揭示了尿代谢组学在中国的中心效应和区域效应。本研究结果可为临床多中心尿液代谢组研究的实验设计提供参考。
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来源期刊
Urine (Amsterdam, Netherlands)
Urine (Amsterdam, Netherlands) Health Informatics, Pathology and Medical Technology, Urology
自引率
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审稿时长
99 days
期刊最新文献
In addition to early biomarkers, what else can be done with urine? CreCENT: Creatinine and Chloride based Electrochemical Non-faradaic renal health mapping Technology A facile strategy for comprehensive proteome analysis of urine using ultracentrifugation fractionation, solid-phase alkylation based sample preparation and liquid chromatography-mass spectrometry A new HPLC-MS/MS method for urinary creatinine determination: Comparison study with Jaffè’s method A review on traditional natural compounds and conventional methods for the treatment of UTI
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