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儿童嗜酸性粒细胞性食管炎的非靶向高分辨率代谢组学

Untargeted, High-Resolution Metabolomics in Pediatric Eosinophilic Esophagitis.

作者信息

Sinclair Elizabeth M, Cohen Catherine C, Tran ViLinh, Jones Dean P, Alvarez Jessica A, Kamaleswaran Rishikesan, Rad Milad Ghiasi, Kruszewski Patrice G, Vos Miriam B

机构信息

From the Department of Pediatrics, University of Pittsburgh School of Medicine, Pittsburgh, PA.

the Pediatric Gastroenterology, Hepatology & Nutrition, University of Pittsburgh Medical Center Children's Hospital of Pittsburgh, Pittsburgh, PA.

出版信息

J Pediatr Gastroenterol Nutr. 2023 Mar 1;76(3):355-363. doi: 10.1097/MPG.0000000000003693. Epub 2022 Dec 27.

Abstract

BACKGROUND/OBJECTIVES: Eosinophilic esophagitis (EoE) is an inflammatory disease of unclear etiology. The aim of this study was to use untargeted plasma metabolomics to identify metabolic pathway alterations associated with EoE to better understand the pathophysiology.

METHODS

This prospective, case-control study included 72 children, aged 1-17 years, undergoing clinically indicated upper endoscopy (14 diagnosed with EoE and 58 controls). Fasting plasma samples were analyzed for metabolomics by high-resolution dual-chromatography mass spectrometry. Analysis was performed on sex-matched groups at a 2:1 ratio. Significant differences among the plasma metabolite features between children with and without EoE were determined using multivariate regression analysis and were annotated with a network-based algorithm. Subsequent pathway enrichment analysis was performed.

RESULTS

Patients with EoE had a higher proportion of atopic disease (85.7% vs 50%, P = 0.019) and any allergies (100% vs 57.1%, P = 0.0005). Analysis of the dual chromatography features resulted in a total of 918 metabolites that differentiated EoE and controls. Glycerophospholipid metabolism was significantly enriched with the greatest number of differentiating metabolites and overall pathway enrichment ( P < 0.01). Multiple amino and fatty acid pathways including linoleic acid were also enriched, as well as pyridoxine metabolism ( P < 0.01).

CONCLUSIONS

In this pilot study, we found differences in metabolites involved in glycerophospholipid and inflammation pathways in pediatric patients with EoE using untargeted metabolomics, as well as overlap with amino acid metabolome alterations found in atopic disease.

摘要

背景/目的:嗜酸性粒细胞性食管炎(EoE)是一种病因不明的炎症性疾病。本研究旨在通过非靶向血浆代谢组学来识别与EoE相关的代谢途径改变,以更好地理解其病理生理学。

方法

这项前瞻性病例对照研究纳入了72名1至17岁接受临床指征性上消化道内镜检查的儿童(14例诊断为EoE,58例为对照)。通过高分辨率双色谱质谱法对空腹血浆样本进行代谢组学分析。以2:1的比例对性别匹配组进行分析。使用多变量回归分析确定患有和未患有EoE的儿童血浆代谢物特征之间的显著差异,并使用基于网络的算法进行注释。随后进行通路富集分析。

结果

EoE患者的特应性疾病比例更高(85.7%对50%,P = 0.019),以及任何过敏的比例更高(100%对57.1%,P = 0.0005)。对双色谱特征的分析产生了总共918种区分EoE和对照的代谢物。甘油磷脂代谢显著富集,具有最多的区分代谢物和整体通路富集(P < 0.01)。包括亚油酸在内的多种氨基酸和脂肪酸途径也有富集,以及维生素B6代谢(P < 0.01)。

结论

在这项初步研究中,我们使用非靶向代谢组学发现,小儿EoE患者中参与甘油磷脂和炎症途径的代谢物存在差异,并且与特应性疾病中发现的氨基酸代谢组改变存在重叠。

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