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Urinary metabolomics (GC-MS) reveals that low and high birth weight infants share elevated inositol concentrations at birth

机译:尿液代谢组学(GC-MS)显示,低体重和高出生体重的婴儿在出生时均具有较高的肌醇浓度

摘要

Objective: Metabolomics is a new ‘‘omics’’ platform aimed at high-throughput identification, quantification and characterization of small molecule metabolites. The metabolomics approach has been successfully applied to the classification different physiological states and identification of perturbed biochemical pathways. The purpose of the current investigation is the application of metabolomics to explore biological mechanisms which may lead to the onsetudof metabolic syndrome in adulthood.udMethods: We evaluated differences in metabolites in the urine collected within 12 hours from 23 infants with IUGR (IntraUterine Growth Restriction), or LGA (Large for Gestational Age), compared to control infants (10 patients defined AGA: Appropriate for Gestational Age). Urinary metabolites were quantified by GC-MS and used to highlight similarities between the two metabolic diseases and identify metabolic markers for their predisposition. Quantified metabolites were analyzed using a multivariate statistics coupled with receiver operator characteristic curve (ROC) analysis of identified biomarkers.udResults: Urinary myo-inositol was the most important discriminant between LGA + IUGR and control infants, and displayed an area under the ROC curve¼1.udConclusion: We postulate that the increase in plasma and consequently urinary inositol may constitute a marker of altered glucose metabolism during fetal development in both IUGR and LGA newborns.
机译:目标:代谢组学是一个新的“组学”平台,旨在对小分子代谢物进行高通量鉴定,定量和表征。代谢组学方法已成功应用于不同生理状态的分类和受干扰的生化途径的鉴定。当前研究的目的是应用代谢组学方法研究可能导致成年后代谢综合征发作的生物学机制。 ud方法:我们评估了23例IUGR(IntraUterine)婴儿在12小时内收集的尿液中代谢产物的差异。与对照婴儿(10例定义为AGA:适合妊娠年龄的患者)相比,有生长限制)或LGA(妊娠年龄大)。尿液代谢物通过GC-MS进行定量,并用于突出显示两种代谢疾病之间的相似性,并确定易感性的代谢标志物。结果:尿肌肌醇是LGA + IUGR与对照婴儿之间最重要的判别指标,并在ROC曲线下显示区域¼1结论:我们假设IUGR和LGA新生儿在胎儿发育过程中血浆和因此尿肌醇的增加可能构成葡萄糖代谢改变的标志。

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