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Correlation between oxidative stress and G6PD activity in neonatal jaundice
S Raicevic1, S Eventov-Friedman, S Bolevich
1Clinic of Gynecology and Obstetrics, Clinical Centre of Montenegro, Podgorica, Montenegro.
Insights
Neonates experiencing fetal distress exhibit increased oxidative stress and lower red blood cell counts. This study investigated the relationship between fetal distress, glucose 6-phosphate dehydrogenase (G6PD) deficiency, and oxidative stress markers in newborns.
Area of Science:
- Biochemistry
- Neonatalogy
- Perinatal Medicine
Background:
- Fetal distress compromises oxygen supply, potentially leading to oxidative stress.
- Glucose 6-phosphate dehydrogenase (G6PD) deficiency can exacerbate oxidative stress and hemolysis.
- Neonatal jaundice is associated with altered oxidant-antioxidant profiles.
Purpose of the Study:
- To investigate oxidative stress markers in neonates with and without fetal distress.
- To assess the relationship between fetal distress, G6PD activity, and oxidative status.
- To evaluate red blood cell count and bilirubin levels in neonates with fetal distress.
Main Methods:
- Comparative study of 22 neonates with fetal distress and 24 controls.
- Analysis of umbilical cord blood for erythrocyte count, total bilirubin, G6PD activity, and oxidative stress parameters (TBARS, NO, O2(-), H2O2, SOD, CAT).
- Measurements performed at birth and hospital discharge.
Main Results:
- Neonates with fetal distress showed significantly higher levels of superoxide radicals (O2(-)), hydrogen peroxide (H2O2), superoxide dismutase (SOD), and related ratios (O2(-)/SOD, H2O2/CAT).
- Lower red blood cell counts and higher bilirubin levels were observed in neonates with fetal distress.
- Reduced G6PD and catalase (CAT) activity were noted in neonates experiencing fetal distress.
Conclusions:
- Fetal distress is associated with elevated oxidative stress markers and compromised antioxidant defenses in newborns.
- The findings suggest a complex interplay between fetal distress, G6PD activity, and oxidative imbalance, though the primary cause (oxidative stress vs. low G6PD) requires further elucidation.
Abstract:
Fetal distress represents a pathophysiological condition in which oxygen is not available to the fetus in sufficient quantities. In cases of glucose 6-phosphate dehydrogenase (G6PD) deficiency, under conditions of oxidative stress, the residual G6PD and complimentary antioxidant mechanisms may become insufficient to neutralize the large amounts of ROS and to prevent severe hemolysis. Alteration in the oxidant-antioxidant profile is also known to occur in neonatal jaundice. The study group included 22 neonates presented with fetal distress during labor and 24 neonates with no evidence of fetal distress (control group). Umbilical cord blood samples were taken immediately after delivery, and the following blood tests were carried out after birth and at discharge from the hospital: erythrocyte count, total bilirubin, G6PD activity, and parameters presenting oxidative status [thiobarbituric acid reactive substances (TBARS), NO, O2 (-), H2O2, SOD, CAT, O2 (-)/SOD, and H2O2/CAT]. There were no significant differences in TBARS and NO values among neonates with or without fetal distress. However, the values of O2 (-), H2O2, SOD, O2 (-)/SOD, and H2O2/CAT among neonates born after fetal distress were significantly higher than in neonates without fetal distress (p < 0.01). In neonates with fetal distress, the total number of RBCs at delivery was significantly lower, accompanied with higher bilirubin content. Also neonates with fetal distress had lower activity of G6PD and lower CAT activity. Higher values of oxidative stress parameters in newborns delivered after fetal distress do not indicate strictly what occurred first-oxidative stress or basic lower G6PD activity.
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