Volume 15, Issue 2 (Int J Mol Cell Med 2026)                   Int J Mol Cell Med 2026, 15(2): 1335-1344 | Back to browse issues page

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Hasan E J, Hassan A J, Jasim A A. Oxidative Stress and Antioxidant Vitamin Profile in Term Neonates with Indirect Hyperbilirubinaemia: A Case–Control Study. Int J Mol Cell Med 2026; 15 (2) :1335-1344
URL: http://ijmcmed.org/article-1-2785-en.html
1- Department of Science, College of Basic Education, University of Al-Mustansiriya, Iraq , enasjabbar.edu@uomustansiriyah.edu.iq
2- Institute of Technical Medical Baghdad, Middle Technical University, Iraq
3- Department of Biochemistry, College of Medicine, University of Baghdad,Iraq.
Abstract:   (12 Views)

Neonatal indirect hyperbilirubinaemia has been associated with altered redox homeostasis, but the combined pattern of oxidative-stress markers and antioxidant-related vitamins remains uncertain. This study compared these biomarkers between jaundiced and healthy term neonates. This single-centre case–control study included 60 term neonates aged ≤7 days with indirect hyperbilirubinaemia classified according to the 2022 American Academy of Pediatrics guideline and 60 healthy term controls. Case samples were collected before phototherapy. Serum total bilirubin, reduced glutathione (GSH), and vitamins C, E, and D were measured. Lipid peroxidation was assessed using a spectrophotometric thiobarbituric acid-reactive substances assay and reported as malondialdehyde equivalents. Compared with controls, jaundiced neonates had higher total bilirubin (median 18.60 vs 2.17 mg/dL), TBARS (6.23 vs 4.26 nmol MDA equivalents/mL), and vitamin C (0.94 vs 0.63 mg/dL), and lower GSH (228 vs 370 µmol/L), vitamin E (7.75 vs 10.60 mg/L), and vitamin D (8.66 vs 18.55 ng/mL; 59 cases). All differences remained significant after false-discovery-rate correction and adjustment for head circumference and mode of delivery. No within-group correlation remained significant after correction for multiple testing. Indirect hyperbilirubinaemia was associated with higher TBARS, lower GSH, vitamin E, and vitamin D, and higher vitamin C. These findings indicate an altered redox and vitamin profile but do not establish causality or diagnostic utility.

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Systematic Reviews and Meta-Analyses: Original Article | Subject: Clinical Biochemistry

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Creative Commons License This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.