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Published on: January 26, 2024
Association of First-Trimester Maternal Biomarkers with Preeclampsia and Related Maternal and Fetal Severe Adverse
Ana Camacho-Carrasco1, Jorge Montenegro-Martínez2, María Luisa Miranda-Guisado3,4,5
1Internal Medicine, Infanta Elena Hospital, 21080 Huelva, Spain.
Insights
First-trimester biomarkers, including novel cell-free DNA (cfDNA) and microvesicles (MVs), can predict preeclampsia (PE) and severe adverse events. Combining these with clinical data improves risk assessment for PE and complications.
Area of Science:
- Obstetrics and Gynecology
- Maternal-Fetal Medicine
- Biomarker Discovery
Background:
- Preeclampsia (PE) is a leading cause of maternal and fetal morbidity.
- Early identification of PE risk is crucial for timely intervention.
- Existing first-trimester biomarkers have limitations in predicting PE and its complications.
Purpose of the Study:
- To evaluate the predictive performance of known and novel maternal blood biomarkers for preeclampsia (PE) and severe adverse events (SAEs).
- To assess the added value of novel biomarkers like cell-free DNA (cfDNA) and microvesicles (MVs) in first-trimester risk stratification for PE.
Main Methods:
- Retrospective case-control study including 54 PE cases and 35 controls.
- Measurement of known biomarkers (PlGF, sFlt-1, betaHCG, PAPPA) and novel biomarkers (cfDNA, MVs) from first-trimester blood samples.
- Analysis using receiver operating characteristic (ROC) curves and multivariate models.
Main Results:
- Placental growth factor (PlGF) showed good diagnostic performance for overall PE, early-onset PE, and fetal-neonatal SAEs.
- Multivariate models incorporating clinical variables and biomarkers achieved high discrimination for PE and fetal-neonatal SAEs.
- Platelet-derived MVs and cfDNA combined with sFlt-1 demonstrated significant predictive value for late-onset PE and maternal SAEs, respectively.
Conclusions:
- Multivariate models integrating clinical data and first-trimester biomarkers enhance PE risk stratification.
- Novel biomarkers cfDNA and MVs improve predictive accuracy, especially in identifying high-risk pregnancies for PE and severe complications.
- These findings support the potential of novel biomarkers for optimizing PE prediction and management.
Abstract:
To assess the association between known (PlGF, sFlt-1, betaHCG, PAPPA) and novel (cell-free DNA, cfDNA, and total endothelial and platelet microvesicles, MVs) maternal blood biomarkers measured at the first trimester with the later development of preeclampsia (PE) and PE-related severe adverse events (SAE), we conducted a retrospective case-control study including women with an established diagnosis of preeclampsia (cases) and healthy pregnant women (controls). Biomarkers were measured from first-trimester blood samples stored in a hospital biobank. A total of 89 women, 54 women with PE and 35 controls were included. PlGF showed good performance for diagnosing overall preeclampsia (AUC: 0.71; 95% CI 0.59-0.82), early-onset preeclampsia (AUC 0.80; 95% CI 0.68-0.9) and fetal-neonatal SAEs (AUC: 0.73; 95% CI 0.63-0.84). Multivariate models including clinical variables, PlGF and other biomarkers showed good to very good discrimination for the development of PE, early-onset PE and fetal-neonatal SAEs (AUCs of 0.87, 0.89 and 0.79, respectively). Platelet-derived MVs were the best isolated biomarker for late-onset PE and, combined with systolic blood pressure, showed good discrimination (AUC: 0.81; 95% CI 0.71-0.92). For maternal SAEs, a model incorporating cfDNA and sFlt-1 provided excellent discrimination (AUC 0.92; 95% CI 0.82-1.00). Our findings suggest that multivariate models incorporating both clinical variables and first-trimester biomarkers may improve risk stratification for PE, especially for late-onset PE and for identifying women at risk of severe maternal or fetal complications. Notably, the inclusion of novel biomarkers such as cfDNA and MVs added value in clinical scenarios where the predictive performance of existing tools remains suboptimal.
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