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Maternal proteomic profiling reveals alterations in lipid metabolism in late-onset fetal growth restriction
Cristina Paules1,2, Lina Youssef1, Jezid Miranda1
1Department of Maternal-Fetal Medicine (ICGON), BCNatal|Fetal Medicine Research Center (Hospital Clínic and Hospital Sant Joan de Déu), Institut D'Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS), University of Barcelona, Sabino de Arana 1, 08028, Barcelona, Spain.
Insights
Late-onset fetal growth restriction involves altered maternal blood proteins, including NOTCH1, impacting cholesterol and fatty acid metabolism. These findings suggest potential new therapeutic targets for this condition.
Area of Science:
- Proteomics
- Maternal-fetal medicine
- Biochemistry
Background:
- Fetal growth restriction (FGR) is a significant cause of perinatal complications.
- Maternal adaptations to placental insufficiency in FGR remain incompletely understood.
- Late-onset FGR requires further investigation into its underlying biological mechanisms.
Purpose of the Study:
- To identify biological processes and protein interactions in late-onset FGR.
- To investigate maternal blood proteomic changes associated with late-onset FGR.
Main Methods:
- Proteomics analysis of maternal blood using 2D nano LC-MS/MS.
- Comparison between 5 late-onset FGR cases and 5 controls.
- Bioinformatic analysis using R package "limma" and Ingenuity Pathway Analysis.
Main Results:
- 25 proteins exhibited significant abundance changes in late-onset FGR (p < 0.05).
- Neurogenic locus notch homolog protein 1 (NOTCH1) identified as a key upstream regulator.
- Enriched pathways included cholesterol/phospholipid efflux, blood cell adhesion, fatty acid metabolism, and dyslipidemia.
Conclusions:
- Maternal proteomic profiles reveal significant alterations in late-onset FGR.
- NOTCH1 and lipid metabolism pathways are implicated in the pathophysiology.
- Identified proteins may serve as future therapeutic targets for late-onset FGR.
Abstract:
Fetal growth restriction defined as the failure to achieve the fetal genetic growth potential is a major cause of perinatal morbidity and mortality. The role of maternal adaptations to placental insufficiency in this disorder is still not fully understood. We aimed to investigate the biological processes and protein-protein interactions involved in late-onset fetal growth restriction in particular. We applied 2D nano LC-MS/MS proteomics analysis on maternal blood samples collected at the time of delivery from 5 singleton pregnancies with late-onset fetal growth restriction and 5 uncomplicated pregnancies. Data were analyzed using R package "limma" and Ingenuity Pathway Analysis. 25 proteins showed significant changes in their relative abundance in late-onset fetal growth restriction (p value < 0.05). Direct protein-protein interactions network demonstrated that Neurogenic locus notch homolog protein 1 (NOTCH1) was the most significant putative upstream regulator of the observed profile. Gene ontology analysis of these proteins revealed the involvement of 14 canonical pathways. The most significant biological processes were efflux of cholesterol, efflux of phospholipids, adhesion of blood cells, fatty acid metabolism and dyslipidemia. Future studies are warranted to validate the potential role of the detected altered proteins as potential therapeutic targets in the late-onset form of fetal growth restriction.
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