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Published on: October 20, 2013
Pulmonary and systemic vascular dysfunction in young offspring of mothers with preeclampsia
Pierre-Yves Jayet1, Stefano F Rimoldi, Thomas Stuber
1Department of Internal Medicine and Botnar Center for Extreme Medicine, University Hospital, Lausanne, Switzerland.
Insights
Preeclampsia exposure in utero causes lasting circulatory defects in children, increasing risks for pulmonary hypertension and early cardiovascular disease. High-altitude studies reveal these persistent vascular issues.
Area of Science:
- Cardiovascular Science
- Perinatal Medicine
- Environmental Health
Background:
- In utero adverse events can lead to adult cardiovascular disease.
- Preeclampsia releases placental factors that may affect fetal circulation.
- High-altitude hypoxia may reveal preeclampsia-induced vascular defects.
Purpose of the Study:
- To investigate if preeclampsia causes persistent circulatory defects in offspring.
- To assess pulmonary artery pressure and brachial artery function in high-altitude residents.
- To explore the link between preeclampsia, vascular dysfunction, and oxidative stress.
Main Methods:
- Assessed pulmonary artery pressure and flow-mediated dilation in offspring of preeclamptic and normal pregnancies at 3600m.
- Compared vascular parameters between 48 offspring of preeclamptic mothers and 90 controls.
- Measured plasma thiobarbituric acid-reactive substances to assess oxidative stress.
Main Results:
- Offspring of preeclamptic mothers had ~30% higher pulmonary artery pressure (32.1 vs 25.3 mm Hg).
- Flow-mediated dilation was ~30% lower (6.3% vs 8.3%) in offspring exposed to preeclampsia.
- Increased oxidative stress markers were found in offspring of preeclamptic mothers.
Conclusions:
- Preeclampsia induces persistent systemic and pulmonary circulatory defects in offspring.
- These defects predispose to exaggerated hypoxic pulmonary hypertension in childhood.
- Preeclampsia may contribute to premature cardiovascular disease later in life.
Background:
Adverse events in utero may predispose to cardiovascular disease in adulthood. The underlying mechanisms are unknown. During preeclampsia, vasculotoxic factors are released into the maternal circulation by the diseased placenta. We speculated that these factors pass the placental barrier and leave a defect in the circulation of the offspring that predisposes to a pathological response later in life. The hypoxia associated with high-altitude exposure is expected to facilitate the detection of this problem.
Methods And Results:
We assessed pulmonary artery pressure (by Doppler echocardiography) and flow-mediated dilation of the brachial artery in 48 offspring of women with preeclampsia and 90 offspring of women with normal pregnancies born and permanently living at the same high-altitude location (3600 m). Pulmonary artery pressure was roughly 30% higher (mean+/-SD, 32.1+/-5.6 versus 25.3+/-4.7 mm Hg; P<0.001) and flow-mediated dilation was 30% smaller (6.3+/-1.2% versus 8.3+/-1.4%; P<0.0001) in offspring of mothers with preeclampsia than in control subjects. A strong inverse relationship existed between flow-mediated dilation and pulmonary artery pressure (r=-0.61, P<0.001). The vascular dysfunction was related to preeclampsia itself because siblings of offspring of mothers with preeclampsia who were born after a normal pregnancy had normal vascular function. Augmented oxidative stress may represent an underlying mechanism because thiobarbituric acid-reactive substances plasma concentration was increased in offspring of mothers with preeclampsia.
Conclusions:
Preeclampsia leaves a persistent defect in the systemic and the pulmonary circulation of the offspring. This defect predisposes to exaggerated hypoxic pulmonary hypertension already during childhood and may contribute to premature cardiovascular disease in the systemic circulation later in life.
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