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Fetal Echocardiography and Pulsed-wave Doppler Ultrasound in a Rabbit Model of Intrauterine Growth Restriction
Published on: June 29, 2013
Maternal plasma syndecan-1: a biomarker for fetal growth restriction
Alexander Juusela1,2, Eunjung Jung1,2, Dahiana M Gallo1,2,3
1Perinatology Research Branch, Division of Obstetrics and Maternal-Fetal Medicine, Division of Intramural Research, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, United States Department of Health and Human Services, Bethesda, MD, and Detroit, MI, USA.
Insights
Maternal plasma syndecan-1 levels are lower in pregnancies with fetal growth restriction, particularly when placental insufficiency is indicated by Doppler velocimetry. Low syndecan-1 may indicate placental disease but is not a standalone biomarker for fetal growth restriction.
Area of Science:
- Obstetrics and Gynecology
- Perinatal Medicine
- Biomarker Discovery
Background:
- Fetal growth disorders increase perinatal risks and long-term health issues.
- Small-for-gestational-age (SGA) infants often experience growth restriction due to placental insufficiency.
- Syndecan-1, a marker of endothelial damage, is being investigated for its role in pregnancy complications.
Purpose of the Study:
- To evaluate maternal plasma syndecan-1 as a potential biomarker for fetal growth restriction (FGR).
- To investigate the relationship between syndecan-1 levels and placental function indicators like Doppler velocimetry.
Main Methods:
- A cross-sectional study compared plasma syndecan-1 in normal pregnancies (n=130) and pregnancies with SGA neonates (n=50).
- Doppler velocimetry of uterine and umbilical arteries was performed for SGA cases.
- Plasma syndecan-1 concentrations were measured using immunoassay within 48 hours of Doppler assessment.
Main Results:
- Maternal plasma syndecan-1 concentrations were significantly lower in pregnancies with SGA fetuses compared to controls (p=0.0001).
- This difference was most pronounced in SGA cases with abnormal umbilical and uterine artery Doppler velocimetry (p<0.001).
- Lower syndecan-1 levels correlated inversely with umbilical artery pulsatility index (r=-0.5, p=0.003), and a threshold of ≤850 ng/mL showed moderate accuracy in identifying FGR with abnormal Doppler (AUC 0.83).
Conclusions:
- Low maternal plasma syndecan-1 may indicate placental disease and potential fetal growth restriction.
- Syndecan-1 shows promise as a biomarker for FGR, especially when combined with Doppler findings.
- However, syndecan-1 alone has limited accuracy for diagnosing fetal growth restriction.
Objective:
The identification of fetal growth disorders is an important clinical priority given that they increase the risk of perinatal morbidity and mortality as well as long-term diseases. A subset of small-for-gestational-age (SGA) infants are growth-restricted, and this condition is often attributed to placental insufficiency. Syndecan-1, a product of the degradation of the endothelial glycocalyx, has been proposed as a biomarker of endothelial damage in different pathologies. During pregnancy, a "specialized" form of the glycocalyx-the "syncytiotrophoblast glycocalyx"-covers the placental villi. The purpose of this study was to determine whether the concentration of maternal plasma syndecan-1 can be proposed as a biomarker for fetal growth restriction.
Study Design:
A cross-sectional study was designed to include women with normal pregnancy (n = 130) and pregnant women who delivered an SGA neonate (n = 50). Doppler velocimetry of the uterine and umbilical arteries was performed in women with an SGA fetus at the time of diagnosis. Venipuncture was performed within 48 h of Doppler velocimetry and plasma concentrations of syndecan-1 were determined by a specific and sensitive immunoassay.
Results:
(1) Plasma syndecan-1 concentration followed a nonlinear increase with gestational age in uncomplicated pregnancies (R2 = 0.27, p < .001); (2) women with a pregnancy complicated with an SGA fetus had a significantly lower mean plasma concentration of syndecan-1 than those with an appropriate-for-gestational-age fetus (p = .0001); (3) this difference can be attributed to fetal growth restriction, as the mean plasma syndecan-1 concentration was significantly lower only in the group of women with an SGA fetus who had abnormal umbilical and uterine artery Doppler velocimetry compared to controls (p = .00071; adjusted p = .0028). A trend toward lower syndecan-1 concentrations was also noted for SGA with abnormal uterine but normal umbilical artery Doppler velocimetry (p = .0505; adjusted p = .067); 4) among women with an SGA fetus, those with abnormal umbilical and uterine artery Doppler findings had a lower mean plasma syndecan-1 concentration than women with normal Doppler velocimetry (p = .02; adjusted p = .04); 5) an inverse relationship was found between the maternal plasma syndecan-1 concentration and the umbilical artery pulsatility index (r = -0.5; p = .003); and 6) a plasma syndecan-1 concentration ≤ 850 ng/mL had a positive likelihood ratio of 4.4 and a negative likelihood ratio of 0.24 for the identification of a mother with an SGA fetus who had abnormal umbilical artery Doppler velocimetry (area under the ROC curve 0.83; p < .001).
Conclusion:
Low maternal plasma syndecan-1 may reflect placental diseases and this protein could be a biomarker for fetal growth restriction. However, as a sole biomarker for this condition, its accuracy is low.
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