Research Institute for Pesticides and Water (IUPA), Universitat Jaume I, 12071 Castellón, Spain.
Department of Preventive Medicine and Public Health, School of Medicine, University of Valencia, 46010 Valencia, Spain.
Nutrients. 2020 Jun 29;12(7):1916. doi: 10.3390/nu12071916.
A major problem with dietary assessments is their subjective nature. Untargeted metabolomics and new technologies can shed light on this issue and provide a more complete picture of dietary intake by measuring the profile of metabolites in biological samples. Oranges are one of the most consumed fruits in the world, and therefore one of the most studied for their properties. The aim of this work was the application of untargeted metabolomics approach with the novel combination of ion mobility separation coupled to high resolution mass spectrometry (IMS-HRMS) and study the advantages that this technique can bring to the area of dietary biomarker discovery, with the specific case of biomarkers associated with orange consumption () in plasma samples taken during an acute intervention study (consisting of a randomized, controlled crossover trial in healthy individuals). A total of six markers of acute orange consumption, including betonicines and conjugated flavonoids, were identified with the experimental data and previous literature, demonstrating the advantages of ion mobility in the identification of dietary biomarkers and the benefits that an additional structural descriptor, as the collision cross section value (CCS), can provide in this area.
饮食评估的一个主要问题是其主观性。非靶向代谢组学和新技术可以通过测量生物样本中代谢物的特征来阐明这个问题,并提供更全面的饮食摄入情况。橙子是世界上消费最多的水果之一,因此,人们对其特性进行了大量的研究。这项工作的目的是应用非靶向代谢组学方法,结合新型的离子淌度分离与高分辨质谱(IMS-HRMS)联用,并研究该技术在饮食生物标志物发现领域的优势,具体案例是与橙子消费相关的生物标志物()在急性干预研究中采集的血浆样本(包括健康个体的随机、对照交叉试验)。利用实验数据和先前的文献,共鉴定出 6 种与急性橙子消费相关的标志物,包括贝塔宁和共轭类黄酮,证明了离子淌度在鉴定饮食生物标志物方面的优势,以及作为附加结构描述符(如碰撞截面值(CCS))在该领域提供的益处。