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Exploring the Impact of First Trimester Elevated Lipoprotein(a) Levels on Preeclampsia, Preterm Delivery, and Fetal
Apostolia Galani1, Athanasios Zikopoulos2, Anastasios Potiris2
1Department of Metabolism, Digestion and Reproduction, Faculty of Medicine, Imperial College London, London W12 ONN, UK.
Insights
Elevated lipoprotein(a) levels in early pregnancy significantly increase the risk of preeclampsia (PE) and other adverse outcomes like fetal growth restriction and preterm birth. Early screening can identify high-risk pregnancies.
Area of Science:
- Obstetrics and Gynecology
- Cardiovascular Medicine
- Metabolic Disorders
Background:
- Preeclampsia (PE) is a complex, multisystem disorder impacting maternal and newborn health.
- Lipid metabolism abnormalities are increasingly implicated in PE pathophysiology.
- First-trimester lipoprotein(a) levels may serve as an early predictor of PE risk.
Purpose of the Study:
- To investigate the association between elevated first-trimester lipoprotein(a) levels and the risk of developing preeclampsia.
- To assess the correlation between high lipoprotein(a) and other adverse pregnancy outcomes.
Main Methods:
- A prospective cohort study of 150 pregnant women without prior PE history.
- Lipoprotein(a) levels measured in the first trimester (<12 weeks gestation).
- Logistic regression analysis to determine associations with PE, preterm birth, gestational hypertension, and fetal growth restriction.
Main Results:
- Women with elevated lipoprotein(a) showed a significantly higher incidence of PE (64.7% vs. 15.5%, p < 0.001).
- Elevated lipoprotein(a) was also associated with increased odds of fetal growth restriction (p < 0.001), gestational hypertension (p = 0.024), and preterm delivery (p = 0.009).
Conclusions:
- Elevated first-trimester lipoprotein(a) is strongly associated with an increased risk of preeclampsia.
- These findings suggest lipoprotein(a) may be a valuable biomarker for early PE risk stratification.
- Further research into the pathophysiological link could improve maternal and neonatal outcomes.
Abstract:
Background/Objectives: Preeclampsia (PE), characterized by its complex and multisystemic nature, significantly compromises the health outcomes of both mothers and their newborns. According to recent research, its underlying pathophysiological mechanisms may be influenced by abnormalities in lipid metabolism. The purpose of this study is to assess the association between unfavorable pregnancy outcomes and increased lipoprotein(a) levels in the first trimester and the subsequent risk of PE. Methods: A prospective cohort study comprising 150 pregnant women with a gestational age of less than 12 weeks and no history of PE was carried out at the University Hospital of Ioannina. In the first trimester, lipoprotein(a) levels were assessed, and individuals were monitored for the emergence of preeclampsia, preterm birth, gestational hypertension without proteinuria, and fetal growth limitation. Selection bias was minimized through the use of sequential sampling and rigorous inclusion and exclusion criteria. Associations were assessed using logistic regression analysis. Results: Women with elevated lipoprotein(a) levels had a considerably greater risk of PE than those with normal levels (64.7% vs. 15.5%, p < 0.001). Additionally, elevated lipoprotein(a) was linked to higher odds of fetal growth restriction (p < 0.001), gestational hypertension without proteinuria (p = 0.024), and premature delivery (p = 0.009). These results imply that early lipoprotein(a) screening during pregnancy may help identify women who are at high risk for PE and its associated negative consequences. Conclusions: The association between PE and elevated first-trimester lipoprotein(a) levels highlights the necessity for a deeper understanding of the underlying pathophysiological mechanisms, which could ultimately improve outcomes for both mothers and newborns.
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