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Updated: Sep 18, 2025

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Published on: February 10, 2023
Antioxidant Status in Children with Neurogenic Bladder
Joanna Bagińska-Chyży1, Agata Korzeniecka-Kozerska1
1Department of Pediatrics and Nephrology, Medical University of Białystok, 17 Waszyngton Str., 15-274 Białystok, Poland.
Background:
Pediatric neurogenic bladder (NB), often resulting from myelomeningocele, impairs bladder function due to disrupted neural control and is worsened by urinary retention, recurrent urinary tract infections, the absence of voluntary voiding, and additional sequelae of myelomeningocele, such as motor impairments, delayed colonic transit, and nutritional deficiencies. Oxidative stress arises from an imbalance between oxidant production and the body's antioxidant defenses and is recognized as both a contributor to and a consequence of various pathological conditions. This study aims to assess the total antioxidant status (TAS) in NB patients, evaluate its impact on urinary antioxidants, and correlate the findings with the urodynamic parameters in NB patients compared to those in non-NB controls.
Methods:
This study included 29 patients with NB, who were compared with 57 non-NB individuals. The comparative analyses encompassed serum and urinary total antioxidant status normalized to creatinine (uTAS/creatinine) and renal function markers (creatinine, urea, uric acid, and the glomerular filtration rate [GFR]), as well as urodynamic findings. TAS was determined using the colorimetric ABTS method.
Results:
The patients with NB demonstrated a significantly lower serum TAS and elevated urinary TAS and uTAS/creatinine ratios in comparison to these values in the control group (p < 0.001). Furthermore, a positive correlation was observed between uTAS/creatinine and detrusor pressure at the maximum cystometric capacity, while a negative correlation was found between uTAS/creatinine and bladder wall compliance (r = 0.5, r = -0.68 respectively).
Conclusions:
The observed decrease in serum TAS and the increase in urinary TAS in NB may not only serve as evidence of an imbalance in antioxidant homeostasis but also suggest a potential contributory role to the deterioration of urodynamic function.
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