Salivary oxidative stress in children during acute asthmatic attack and during remission

Lea Bentur1, Yasser Mansour, Riva Brik

  • 1Pediatric Pulmonology Unit, Meyer Children's Hospital, Rambam Medical Center, P.O. Box 9602, Haifa 31092, Israel. l_bentur@rambam.health.gov.il

Respiratory Medicine
|December 3, 2005
PubMed

Insights

Children with asthma show lower salivary peroxidase activity during attacks, indicating systemic oxidative stress. Saliva analysis reveals significant changes in antioxidant enzymes and mineral levels, offering a non-invasive diagnostic approach.

Area of Science:

  • Biochemistry
  • Pediatric Pulmonology
  • Clinical Chemistry

Background:

  • Asthma pathogenesis involves increased reactive oxygen species from peripheral blood cells.
  • Saliva analysis offers a non-invasive method for studying pediatric conditions.
  • Previous research suggests a link between oxidative stress and asthma.

Purpose of the Study:

  • To analyze the salivary oxidative profile and composition in children with asthma during acute attacks and remission.
  • To compare salivary antioxidant levels in asthmatic children with healthy controls.

Main Methods:

  • Inclusion of school-aged children (6-18 years) presenting with acute asthma.
  • Assessment of clinical scores, spirometry, and salivary analysis during asthma attacks and remission (2-4 weeks post-attack).
  • Blind analysis of salivary samples compared between asthmatic children (attack vs. remission) and healthy controls.

Main Results:

  • Significantly decreased salivary peroxidase enzyme activity in asthmatic children during attacks compared to controls, with partial recovery during remission.
  • Reduced salivary calcium concentrations and increased phosphate levels observed in asthmatic children.
  • Salivary composition alterations identified during acute asthma attacks.

Conclusions:

  • Acute asthma attacks in children are characterized by decreased salivary peroxidase activity, a key antioxidant enzyme.
  • Asthma exacerbations are associated with distinct changes in salivary composition, including mineral levels.
  • Salivary analysis can reflect systemic oxidative stress in pediatric asthma, suggesting its potential as a diagnostic tool.
Abstract

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