Metabolic Infrastructure of Pregnant Women With Trisomy 21 Fetuses; Metabolomic Analysis

缬氨酸 异亮氨酸 肌酸 代谢组学 苯丙氨酸 化学 代谢组 内科学 蛋氨酸 亮氨酸 代谢途径 胎儿 生物化学 内分泌学 氨基酸 生物 医学 新陈代谢 怀孕 色谱法 遗传学
作者
Emirhan Nemutlu,Gökçen Örgül,Tuba Reçber,Emine Aydın,Ece Özkan,Mert Turğal,Mehmet Alikaşifoğlu,Sedef Kır,Mehmet Sinan Beksaç
出处
期刊:Zeitschrift Fur Geburtshilfe Und Neonatologie [Georg Thieme Verlag KG]
卷期号:223 (05): 297-303 被引量:21
标识
DOI:10.1055/a-0877-7869
摘要

We aimed to configure impaired/altered metabolomic profiles of pregnant women carrying Down syndrome (DS) fetuses. The study involved 21 and 32 pregnant women with DS and euploid fetuses, respectively, as determined by prenatal screening and diagnosis as part of an antenatal care program. Metabolomic analyses were carried out using gas chromatography-mass spectrometry (GC-MS) and liquid chromatography-quadrupole time-of-flight mass spectrometry (LC-qTOF-MS) methods. A total of 95 metabolites were identified. GC-MS analysis indicated that levels of 2-hydroxybutyric acid, benzoic acid, nonanoic acid, 3-hydroxybutyric acid, and 2-ketoisocaproic acid were increased in the DS group, where beta-alanine, threonic acid, oxalic acid, alpha-tocopherol, uracil, 2-piperidone, and creatinine were decreased. However, LC-qTOF-MS analysis showed that lipid-related metabolites were decreased in women carrying DS fetuses, whereas creatine, N4-phosphoagmatine, citrate, 2,5-dioxopentanoate, 2-furoate, pyruvate, and fructose levels were increased. Pathway analysis was also performed using metabolites whose levels were significantly altered (p<0.05) between the groups, and the findings indicated that the biosynthesis pathways of aminoacyl-tRNA and "valine-leucine-isoleucine", and metabolism pathways of "glycine-serine-threonine", nitrogen, "alanine-aspartate-glutamate", propanoate, glycerophospholipid, cysteine, methionine, and phenylalanine were significantly altered. Our findings indicate a special type of metabolic status/syndrome in pregnant women with Down syndrome fetuses. It could be speculated that altered metabolic status might influence both gametogenesis and embryogenesis. Down syndrome is a complex genetic disorder that is important to detect prenatally, but may also be prevented by taking necessary precautions prior to pregnancy.
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