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阵发性和持续性心房颤动的代谢组学与生物标志物

Metabolomics and Biomarkers for Paroxysmal and Persistent Atrial Fibrillation.

作者信息

Zhang Li-Li, Lin Wen-Hua, Di Cheng-Ye, Hou Hai-Tao, Chen Huan-Xin, Zhou Jie, Yang Qin, He Guo-Wei

机构信息

Faculty of Graduate Studies Chengde Medical University, Chengde, China, & Department of Cardiovascular Surgery & The Institute of Cardiovascular Diseases, TEDA International Cardiovascular Hospital, Tianjin University & Chinese Academy of Medical Sciences Tianjin China.

Tianjin Key Laboratory of Molecular Regulation of Cardiovascular Diseases and Translational Medicine Tianjin China.

出版信息

J Am Heart Assoc. 2024 Feb 6;13(3):e032153. doi: 10.1161/JAHA.123.032153. Epub 2024 Jan 31.

Abstract

BACKGROUND

Atrial fibrillation (AF) is the most common type of arrhythmia worldwide and is associated with serious complications. This study investigated the metabolic biomarkers associated with AF and the differences in metabolomics and associated metabolic biomarkers between paroxysmal AF (AFPA) and persistent AF.

METHODS AND RESULTS

Plasma samples were prospectively collected from patients with AF and patients in sinus rhythm with negative coronary angiography. The patients were divided into 3 groups: AFPA, persistent AF, and sinus rhythm (N=54). Metabolomics (n=36) using ultra-high-performance liquid chromatography mass spectrometry was used to detect differential metabolites that were validated in a new cohort (n=18). The validated metabolites from the validation phase were further analyzed by receiver operating characteristic. Among the 36 differential metabolites detected by omics assay, 4 were successfully validated with area under the curve >0.8 (<0.05). Bioinformatics analysis confirmed the enrichment pathways of unsaturated fatty acid biosynthesis, glyoxylate and dicarboxylate metabolism, and carbon metabolism. Arachidonic acid was a potential biomarker of AFPA, glycolic acid and L-serine were biomarkers of AFPA and persistent AF, and palmitelaidic acid was a biomarker of AFPA.

CONCLUSIONS

In this metabolomics study, we detected 36 differential metabolites in AF, and 4 were validated with high sensitivity and specificity. These differential metabolites are potential biomarkers for diagnosis and monitoring of disease course. This study therefore provides new insights into the precision diagnosis and management of AF.

摘要

背景

心房颤动(AF)是全球最常见的心律失常类型,与严重并发症相关。本研究调查了与AF相关的代谢生物标志物以及阵发性AF(AFPA)和持续性AF之间的代谢组学差异及相关代谢生物标志物。

方法与结果

前瞻性收集AF患者和冠状动脉造影阴性的窦性心律患者血浆样本。患者分为3组:AFPA组、持续性AF组和窦性心律组(N = 54)。采用超高效液相色谱质谱法进行代谢组学分析(n = 36),以检测差异代谢物,并在一个新队列(n = 18)中进行验证。对验证阶段得到的经确认的代谢物进一步进行受试者工作特征分析。在通过组学分析检测到的36种差异代谢物中,4种得到成功验证,曲线下面积>0.8(P<0.05)。生物信息学分析证实了不饱和脂肪酸生物合成、乙醛酸和二羧酸代谢以及碳代谢的富集途径。花生四烯酸是AFPA的潜在生物标志物,乙醇酸和L-丝氨酸是AFPA和持续性AF的生物标志物,而棕榈油酸是AFPA的生物标志物。

结论

在这项代谢组学研究中,我们在AF中检测到36种差异代谢物,其中4种经高灵敏度和特异性验证。这些差异代谢物是疾病诊断和病程监测的潜在生物标志物。因此,本研究为AF的精准诊断和管理提供了新见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99e4/11056137/701350875a33/JAH3-13-e032153-g005.jpg

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