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Oxidative Stress Levels Throughout Pregnancy, at Birth, and in the Neonate
Tiffany A Moore1, Iman M Ahmad2, Kendra K Schmid3
11 College of Nursing, University of Nebraska Medical Center, Omaha, NE, USA.
Insights
Oxidative stress markers, including superoxide, varied in pregnant women and newborns. While some consistency was observed, correlations differed between high- and low-risk groups, highlighting potential dysregulation.
Area of Science:
- Perinatal medicine
- Biochemistry
- Oxidative stress research
Background:
- Oxidative stress is linked to adverse perinatal outcomes.
- Longitudinal data on perinatal oxidative stress and maternal-neonatal correlations are scarce.
Purpose of the Study:
- To describe and compare levels of oxidative stress markers (superoxide, superoxide dismutase, catalase, glutathione) throughout the perinatal period.
- To investigate correlations between maternal and neonatal oxidative stress levels.
Main Methods:
- Longitudinal descriptive study of 140 high- and low-risk pregnant women.
- Blood samples collected at multiple gestational points, during labor, umbilical cord, and neonates post-birth.
- Superoxide measured via electron paramagnetic resonance (EPR) spectroscopy; antioxidants via assay kits.
Main Results:
- Oxidative stress markers differed between high- and low-risk groups and varied over time.
- Significant correlations between time points suggested intraindividual consistency, but this varied by risk group.
- EPR spectroscopy proved feasible for perinatal oxidative stress assessment.
Conclusions:
- Findings offer novel insights into perinatal superoxide levels.
- Further research is warranted to explore links between prenatal and neonatal oxidative stress dysregulation.
Background:
Oxidative stress is associated with poor perinatal outcomes. Little is known regarding the longitudinal levels of oxidative stress in the perinatal period or the correlation between maternal and neonatal oxidative stress levels.
Objective:
Describe and compare oxidative stress, specifically superoxide, superoxide dismutase, catalase, and glutathione levels, over the perinatal period.
Study Design:
Longitudinal descriptive design using a convenience sample of medically high- and low-risk pregnant women (n = 140) from a maternal-fetal medicine and general obstetrics practice, respectively. Blood was obtained from women at 12-20 and 24-28 weeks' gestation and during labor, from the umbilical cord at birth, and from neonates at 24-72 hr after birth. Levels of superoxide were measured using electron paramagnetic resonance (EPR) spectroscopy; antioxidants (superoxide dismutase, catalase, and glutathione) were measured using commercial assay kits. Relationships between oxidative stress levels at different time points were examined using nonparametric methods. Pregnancy outcome was collected.
Results:
Demographic variables, outcome variables, and oxidative stress levels in maternal blood, cord blood, and infants differed between medically high- and low-risk women. Descriptive patterns for oxidative stress measures varied over time and between risk groups. Significant correlations between time points were noted, suggesting intraindividual consistency may exist throughout the perinatal period. However, these correlations were not consistent across each medical risk group.
Conclusion:
EPR spectroscopy is a feasible method for the perinatal population. Results provide new information on perinatal circulating superoxide levels and warrant further investigation into potential relationships between prenatal and neonatal physiologic dysregulation of oxidative stress.
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