AI Article Synopsis

  • Research evaluated the effects of oxygen exposure on antioxidant response and oxidative damage in 16 mechanically ventilated preterm infants by analyzing tracheobronchial aspirate fluid during the first 6 days of life.
  • A positive correlation was found between total antioxidant activity and fractional inspired oxygen concentration (FiO2), particularly strong on day 2, while uric acid showed correlation only within the first 3 days.
  • No correlation was observed between carbonyl content and FiO2, indicating that while preterm infants demonstrated antioxidant responses, the specific role of uric acid as an important respiratory antioxidant emerged particularly during early life stages.

Article Abstract

The effect of O2 exposure, expressed by mean daily fractional inspired oxygen concentration (FiO2), was evaluated during the first 6 d of life in the tracheobronchial aspirate fluid of 16 mechanically ventilated preterm infants in terms of both antioxidant response and oxidative damage, by measuring total antioxidant activity, uric acid concentrations and protein carbonyl content. Each day linear regression analysis was performed and a positive correlation was found between total antioxidant activity and FiO2 during the study period, especially on day 2 of life (r = 0.91, p < 0.0001), but uric acid correlated only in the first 3 d, especially on the 2nd day (r = 0.83, p < 0.0001). No correlation was found between carbonyl content and FiO2. The highest values of total antioxidant activity (416 and 790 micromol l(-1)) were found in 2 babies ventilated with highest FiO2: 1 and 0.80, respectively. Total antioxidant activity was not detectable or was very low in the babies not requiring O2 therapy. The highest value of uric acid (270 micromol l(-1)) was found in the baby ventilated with 100% oxygen. Uric acid concentrations obtained in these babies were much higher then those reported in the bronchoalveolar lavage fluid of adults. Preterm babies seem to have an antioxidant response in the tracheobronchial aspirate fluid following an oxidative stress and uric acid may be physiologically important as an antioxidant of the respiratory tract, especially during the first days of life.

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