Excessive free radical generation in the blood of children suffering from asthma

K R Shanmugasundaram1, S S Kumar, S Rajajee

  • 1Department of Medical Biochemistry, Dr. A.L.M.P.G. Institute of Basic Medical Sciences, University of Madras, Taramani Campus, - 600 113, Chennai, India. erbs@satyam.net.in

Insights

Children with asthma exhibit increased oxygen free radicals and reduced antioxidant defenses, correlating with disease severity. These findings suggest oxygen metabolites play a role in airway inflammation and may serve as biomarkers for asthma susceptibility and treatment monitoring.

Area of Science:

  • Biochemistry
  • Pediatric Pulmonology
  • Oxidative Stress Research

Background:

  • Asthma is a chronic respiratory condition characterized by airway inflammation.
  • Oxidative stress, an imbalance between free radicals and antioxidants, is implicated in asthma pathogenesis.
  • Understanding oxidative stress markers in children with asthma is crucial for disease management.

Purpose of the Study:

  • To evaluate blood biochemical parameters related to oxygen free radicals and antioxidant defenses in children with asthma.
  • To assess the correlation between free radical production, antioxidant status, and asthma severity.
  • To explore the potential of oxidative stress markers in predicting asthma susceptibility and monitoring therapy.

Main Methods:

  • Studied 210 asthmatic children (5-18 years) during episodes and recovery, plus 180 healthy controls.
  • Assayed superoxide and hydroxyl radical formation, lipid peroxidation products, antioxidant enzymes, and free radical scavengers in blood.
  • Measured serum IgE and peak expiratory flow rate (PEFR) to assess allergic reactions and lung capacity.

Main Results:

  • Asthmatic children showed excessive superoxide and hydroxyl radical production, correlating with lower PEFR (disease severity).
  • Significantly lower levels of superoxide dismutase and free radical scavengers were observed in asthmatics, even in resting conditions.
  • Evidence supports a correlation between asthma severity and increased oxygen radical production.

Conclusions:

  • Oxygen metabolites are implicated in modulating airway inflammation in asthma.
  • Elevated superoxide and hydroxyl radical production may indicate asthma susceptibility.
  • These oxidative stress markers could be valuable for monitoring therapeutic interventions in pediatric asthma.

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