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使用血清代谢组学方法进行先天性心脏病的无创性筛查。

Noninvasive screening for congenital heart defects using a serum metabolomics approach.

机构信息

Department of Medicine and Surgery and Dentistry, Scuola Medica Salernitana, University of Salerno, Salerno, Italy.

Metabolomics section, Theoreo Srl - Spin-off Company of the University of Salerno, Salerno, Italy.

出版信息

Prenat Diagn. 2021 May;41(6):743-753. doi: 10.1002/pd.5893. Epub 2021 Feb 13.

Abstract

OBJECTIVE

Heart anomalies represent nearly one-third of all congenital anomalies. They are currently diagnosed using ultrasound. However, there is a strong need for a more accurate and less operator-dependent screening method. Here we report a metabolomics characterization of maternal serum in order to describe a metabolomic fingerprint representative of heart congenital anomalies.

METHODS

Metabolomic profiles were obtained from serum of 350 mothers (280 controls and 70 cases). Nine classification models were built and optimized. An ensemble model was built based on the results from the individual models.

RESULTS

The ensemble machine learning model correctly classified all cases and controls. Malonic, 3-hydroxybutyric and methyl glutaric acid, urea, androstenedione, fructose, tocopherol, leucine, and putrescine were determined as the most relevant metabolites in class separation.

CONCLUSION

The metabolomic signature of second trimester maternal serum from pregnancies affected by a fetal heart anomaly is quantifiably different from that of a normal pregnancy. Maternal serum metabolomics is a promising tool for the accurate and sensitive screening of such congenital defects. Moreover, the revelation of the associated metabolites and their respective biochemical pathways allows a better understanding of the overall pathophysiology of affected pregnancies.

摘要

目的

心脏畸形占所有先天性畸形的近三分之一。目前使用超声进行诊断。然而,我们强烈需要一种更准确、对操作人员依赖程度更低的筛选方法。在这里,我们报告了母体血清的代谢组学特征,以便描述代表心脏先天性畸形的代谢组指纹。

方法

从 350 位母亲(280 位对照和 70 位病例)的血清中获得代谢组学图谱。建立了 9 个分类模型并进行了优化。基于各个模型的结果构建了一个集成模型。

结果

集成机器学习模型正确地对所有病例和对照组进行了分类。丙二酸、3-羟基丁酸和甲基戊二酸、尿素、雄烯二酮、果糖、生育酚、亮氨酸和腐胺被确定为分类分离中最相关的代谢物。

结论

受胎儿心脏异常影响的妊娠中期母体血清的代谢组特征与正常妊娠可定量区分。母体血清代谢组学是一种用于此类先天性缺陷的准确和敏感筛查的有前途的工具。此外,相关代谢物及其各自生化途径的揭示允许更好地理解受影响妊娠的整体病理生理学。

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