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代谢组学在心房颤动中的研究进展——血液、组织和动物模型的综述和荟萃分析。

Metabolomics in atrial fibrillation - A review and meta-analysis of blood, tissue and animal models.

机构信息

Department of Physiology, Amsterdam UMC, Location Vrije Universiteit, Amsterdam Cardiovascular Sciences, Heart Failure and Arrhythmias, 1081 HZ Amsterdam, the Netherlands; Cardiovascular Disease Initiative, Broad Institute of MIT and Harvard, MA 02142, Cambridge, United States.

Department of Physiology, Amsterdam UMC, Location Vrije Universiteit, Amsterdam Cardiovascular Sciences, Heart Failure and Arrhythmias, 1081 HZ Amsterdam, the Netherlands.

出版信息

J Mol Cell Cardiol. 2024 Dec;197:108-124. doi: 10.1016/j.yjmcc.2024.10.011. Epub 2024 Oct 28.

Abstract

BACKGROUND

Atrial fibrillation (AF) is a highly prevalent cardiac arrhythmia associated with severe cardiovascular complications. AF presents a growing global challenge, however, current treatment strategies for AF do not address the underlying pathophysiology. To advance diagnosis and treatment of AF, a deeper understanding of AF root causes is needed. Metabolomics is a fast approach to identify, quantify and analyze metabolites in a given sample, such as human serum or atrial tissue. In the past two decades, metabolomics have enabled research on metabolite biomarkers to predict AF, metabolic features of AF, and testing metabolic mechanisms of AF in animal models. Due to the field's rapid evolution, the methods of AF metabolomics studies have not always been optimal. Metabolomics research has lacked standardization and requires expertise to face methodological challenges.

PURPOSE OF THE REVIEW

We summarize and meta-analyze metabolomics research on AF in human plasma and serum, atrial tissue, and animal models. We present the current progress on metabolic biomarkers candidates, metabolic features of clinical AF, and the translation of metabolomics findings from animal to human. We additionally discuss strengths and weaknesses of the metabolomics method and highlight opportunities for future AF metabolomics research.

摘要

背景

心房颤动(AF)是一种高发的心律失常,与严重的心血管并发症有关。AF 是一个日益严峻的全球性挑战,但目前针对 AF 的治疗策略并未解决其根本的病理生理学问题。为了推进 AF 的诊断和治疗,我们需要更深入地了解 AF 的根本原因。代谢组学是一种快速识别、定量和分析给定样本(如人血清或心房组织)中代谢物的方法。在过去的二十年中,代谢组学已经使研究人员能够通过检测生物标志物来预测 AF、发现 AF 的代谢特征,并在动物模型中测试 AF 的代谢机制。由于该领域的快速发展,AF 代谢组学研究的方法并不总是最佳的。代谢组学研究缺乏标准化,并且需要专业知识来应对方法学挑战。

综述目的

我们总结和荟萃分析了人类血浆和血清、心房组织以及动物模型中与 AF 相关的代谢组学研究。我们介绍了代谢生物标志物候选物、临床 AF 的代谢特征以及从动物到人类的代谢组学研究发现的转化方面的最新进展。我们还讨论了代谢组学方法的优缺点,并强调了未来 AF 代谢组学研究的机会。

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