Evidence mapPaperPMID 41645136Full record

ArticleBMC pregnancy and childbirth2026

Meconium metabolomic profiling dysregulation and neonatal brain injury in selective fetal growth restriction.

Jingyu Liu, Nana Huang, Youzhen Zhang, Xiya Sun, Hai Jiang, Yixin Li, Yanrong Sun, Jing Yang, Yangyu Zhao

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Article in BMC pregnancy and childbirth, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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4 · The record

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5 · Who and what money

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9 authors.

Jingyu Liu *Department of Obstetrics and Gynecology, Peking University Third Hospital, No. 49 Huayuan North Road, Beijing, 100191, China.
Nana Huang *Department of Obstetrics and Gynecology, Peking University Third Hospital, No. 49 Huayuan North Road, Beijing, 100191, China.
Youzhen ZhangDepartment of Obstetrics and Gynecology, Peking University Third Hospital, No. 49 Huayuan North Road, Beijing, 100191, China.
Xiya SunDepartment of Obstetrics and Gynecology, Peking University Third Hospital, No. 49 Huayuan North Road, Beijing, 100191, China.
Hai JiangDepartment of Obstetrics and Gynecology, Peking University Third Hospital, No. 49 Huayuan North Road, Beijing, 100191, China.
Yixin LiDepartment of Obstetrics and Gynecology, Peking University Third Hospital, No. 49 Huayuan North Road, Beijing, 100191, China.
Yanrong SunDepartment of Obstetrics and Gynecology, Peking University Third Hospital, No. 49 Huayuan North Road, Beijing, 100191, China.
Jing YangDepartment of Obstetrics and Gynecology, Peking University Third Hospital, No. 49 Huayuan North Road, Beijing, 100191, China. wingman_yj@163.com.
Yangyu ZhaoDepartment of Obstetrics and Gynecology, Peking University Third Hospital, No. 49 Huayuan North Road, Beijing, 100191, China. zhaoyangyu@bjmu.edu.cn.

Funding

Key Clinical Projects of Peking University Third Hospital BYSYZD2022008National Key Research and Development Program of China 2022YFA1303900National Natural Science Foundation of China 82471747the China Postdoctoral Science foundation 2024M760149
6 · The paper itself

Abstract

backgroundMeconium serves as a valuable biological matrix for characterizing fetal metabolic signatures throughout gestation. Selective fetal growth restriction (sFGR) is associated with adverse neurological outcomes, potentially mediated by underlying metabolic perturbations. However, the specific relationship between dysregulated meconium metabolome and brain injury in sFGR remains poorly understood.

methodsUntargeted metabolomics analysis was performed on meconium samples from sFGR (n = 20) and monochorionic diamniotic twins with birth weight concordance (MCDA-C, n = 13) to quantify metabolic alterations. Neonatal brain injury was assessed via cranial ultrasonography, and long-term neurodevelopmental outcomes were evaluated at 2-3 years of age using the Ages and Stages Questionnaire-third edition subscale. Univariate analysis, partial least-squares discrimination analysis (PLSDA) and pathway analysis were employed to compare the metabolic profiles across different brain injury categories. Machine learning algorithms and receiver operating characteristic (ROC) curve were utilized to identify potential biomarkers associated with neonatal brain injury. Spearman's-based correlation analysis was employed to correlate metabolites levels with physical development and long-term neurodevelopmental outcomes.

resultsIn our study, PLSDA revealed distinct clustering of meconium metabolites profiles in neonates with severe brain injury compared to those with mild brain injury or normal findings. In all sFGR neonates, logistic regression identified two fatty acid metabolism products, 13, 16-docosadienoic acid and nonadecanoic acid, as notably associated with neonatal severe brain injury. Divergent meconium metabolic signatures associated with severe brain injury were observed between the smaller fetus (sFGR-S) and larger fetus (sFGR-L) in sFGR twins. In particular, nicotinamide, hippuric acid, citramalic acid and succinic acid were closely associated with severe brain injury in sFGR-S. Pathway analysis implicated significant dysregulation of the citrate cycle in this subgroup. For sFGR-L, histidine and trans-4-hydroxyproline emerged as best predictive markers for severe brain injury and showed significant correlations with long-term neurodevelopmental outcomes including gross motor and fine motor.

conclusionsDysregulated fatty acid metabolites in the meconium of sFGR neonates are associated with severe brain injury. Divergent metabolomic profiles between sFGR-S and sFGR-L revealed distinct pathological mechanisms underlying brain injury. These findings provide novel insights into metabolic mechanisms of brain injury in sFGR and offer potential predictive biomarkers for adverse neurological outcomes.

Indexed as

Brain InjuriesFetal Growth RetardationMeconiumMetabolomeBiomarkersFemaleHumansInfant, NewbornMaleMetabolomicsPregnancyBiomarkersBrain injuryMeconiumMetabolomicsSelective fetal growth restriction

Identifiers

PMID41645136
PMCPMC12973814

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.