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Published on: June 25, 2010
Associations of Early Pregnancy Metabolite Profiles with Gestational Blood Pressure Development
Sophia M Blaauwendraad1,2, Rama J Wahab1,2, Bas B van Rijn3
1The Generation R Study Group, Erasmus MC, University Medical Center, 3000 CA Rotterdam, The Netherlands.
Insights
Early pregnancy metabolomics, including specific fatty acids and phospholipids, are linked to higher blood pressure. These biomarkers may help identify women at risk for gestational hypertensive disorders.
Area of Science:
- Obstetrics and Gynecology
- Metabolomics
- Cardiovascular Physiology
Background:
- Gestational hypertensive disorders significantly impact pregnancy outcomes.
- Understanding the etiology of hypertension in pregnancy is crucial for prediction and management.
- Metabolomics offers a promising avenue for uncovering underlying metabolic pathways.
Purpose of the Study:
- To investigate the association between early pregnancy serum metabolite profiles and blood pressure development.
- To identify novel metabolites for predicting gestational hypertensive disorders.
- To explore the etiological role of metabolites in hypertension during pregnancy.
Main Methods:
- A prospective cohort study of 803 pregnant women.
- Serum samples analyzed using liquid chromatography-mass spectrometry for amino acids, fatty acids, phospholipids, and carnitines.
- Blood pressure and gestational hypertensive disorders data collected throughout pregnancy.
Main Results:
- Elevated diacyl-phosphatidylcholines and acyl-lysophosphatidylcholines correlated with higher systolic blood pressure.
- A specific non-esterified fatty acid was associated with higher diastolic blood pressure.
- 12 metabolites and the glutamine/glutamic acid ratio predicted blood pressure changes but did not improve prediction of hypertensive disorders beyond clinical markers.
Conclusions:
- Altered early pregnancy serum metabolite profiles, particularly non-esterified fatty acids and phospholipids, are associated with higher gestational blood pressure.
- These findings provide etiological insights into pregnancy hypertension.
- Further replication may enhance early identification of women at risk for gestational hypertensive disorders.
Abstract:
Blood pressure development plays a major role in both the etiology and prediction of gestational hypertensive disorders. Metabolomics might serve as a tool to identify underlying metabolic mechanisms in the etiology of hypertension in pregnancy and lead to the identification of novel metabolites useful for the prediction of gestational hypertensive disorders. In a population-based, prospective cohort study among 803 pregnant women, liquid chromatography—mass spectrometry was used to determine serum concentrations of amino-acids, non-esterified fatty acids, phospholipids and carnitines in early pregnancy. Blood pressure was measured in each trimester of pregnancy. Information on gestational hypertensive disorders was obtained from medical records. Higher individual metabolite concentrations of the diacyl-phosphatidylcholines and acyl-lysophosphatidylcholines group were associated with higher systolic blood pressure throughout pregnancy (Federal Discovery Rate (FDR)-adjusted p-values < 0.05). Higher concentrations of one non-esterified fatty acid were associated with higher diastolic blood pressure throughout pregnancy (FDR-adjusted p-value < 0.05). Using penalized regression, we identified 12 individual early-pregnancy amino-acids, non-esterified fatty acids, diacyl-phosphatidylcholines and acyl-carnitines and the glutamine/glutamic acid ratio, that were jointly associated with larger changes in systolic and diastolic blood pressure from first to third trimester. These metabolites did not improve the prediction of gestational hypertensive disorders in addition to clinical markers. In conclusion, altered early pregnancy serum metabolite profiles mainly characterized by changes in non-esterified fatty acids and phospholipids metabolites are associated with higher gestational blood pressure throughout pregnancy within the physiological ranges. These findings are important from an etiological perspective and, after further replication, might improve the early identification of women at increased risk of gestational hypertensive disorders.
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