Metabolomic analysis reveals an important role of sphingosine 1-phosphate in the development of HFMD due to EV-A71 infection.

IF 4.1 2区 医学 Q2 MICROBIOLOGY Antimicrobial Agents and Chemotherapy Pub Date : 2025-02-13 Epub Date: 2024-12-18 DOI:10.1128/aac.01272-24
Wangquan Ji, Dejian Dang, Guangyuan Zhou, Ling Tao, Tiantian Sun, Dong Li, Cheng Cheng, Huifen Feng, Jinzhao Long, Shuaiyin Chen, Haiyan Yang, Guangcai Duan, Yuefei Jin
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Abstract

Hand, foot, and mouth disease (HFMD) is a serious pediatric infectious disease that causes immeasurable physical and mental health burdens. Currently, there is a lack of information on the mechanisms of HFMD severity and early diagnosis. We performed metabolomic profiling of sera from 84 Enterovirus A71 (EV-A71) infections and 45 control individuals. Targeted metabolomics assays were employed to further validate some of the differential metabolic molecules. We identified significant molecular changes in the sera of HFMD patients compared to healthy controls (HCs). A total of 54, 60, 35, and 62 differential metabolites were screened between mild cases and HCs, severe cases and HCs, severe cases and mild cases, and among the three groups, respectively. These differential metabolites implicated dysregulation of the tricarboxylic acid cycle, alanine, aspartate, and glutamate metabolism, and valine, leucine, and isoleucine biosynthesis. The diagnostic panel based on some overlapped differential metabolites could effectively discriminate severe cases from mild cases with an AUC of 0.912 (95% CI: 0.85-0.97) using the logistic regression model. Next, we found the elevation of serum sphingosine 1-phosphate (S1P) level in EV-A71 infection mice, which was similar to clinical observation. Importantly, after blocking the release of S1P by MK571, the clinical symptoms and survival of mice were significantly improved, involving the reduction of leukocyte infiltration in infected brain tissues. Collectively, our data provided a landscape view of metabolic alterations in EV-A71 infected children and revealed regulating S1P metabolism was an exploitable therapeutic target against EV-A71 infection.

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代谢组学分析显示鞘氨醇1-磷酸在EV-A71感染引起手足口病的发展中起重要作用。
手足口病(手足口病)是一种严重的儿童传染病,造成不可估量的身心健康负担。目前,缺乏关于手足口病严重程度和早期诊断机制的信息。我们对84例肠病毒A71 (EV-A71)感染者和45例对照者的血清进行了代谢组学分析。利用靶向代谢组学分析进一步验证了一些差异代谢分子。与健康对照(hc)相比,我们发现手足口病患者血清中的显著分子变化。在轻度与hcc、重度与hcc、重度与轻度以及三组之间分别筛选出54、60、35、62种差异代谢物。这些差异代谢物涉及三羧酸循环、丙氨酸、天冬氨酸和谷氨酸代谢以及缬氨酸、亮氨酸和异亮氨酸生物合成的失调。采用logistic回归模型,基于部分重叠的差异代谢物的诊断面板能有效区分重症和轻症,AUC为0.912 (95% CI: 0.85 ~ 0.97)。接下来,我们发现EV-A71感染小鼠血清鞘氨醇1-磷酸(S1P)水平升高,这与临床观察结果相似。重要的是,MK571阻断S1P的释放后,小鼠的临床症状和生存得到显著改善,包括感染脑组织中白细胞浸润的减少。总的来说,我们的数据提供了EV-A71感染儿童代谢改变的全景视图,并揭示了调节S1P代谢是针对EV-A71感染的可开发的治疗靶点。
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来源期刊
CiteScore
10.00
自引率
8.20%
发文量
762
审稿时长
3 months
期刊介绍: Antimicrobial Agents and Chemotherapy (AAC) features interdisciplinary studies that build our understanding of the underlying mechanisms and therapeutic applications of antimicrobial and antiparasitic agents and chemotherapy.
期刊最新文献
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