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Oxidative Stress and Antioxidants in Pediatric Asthma's Evolution and Management
Ileana Katerina Ioniuc1, Ancuta Lupu1, Felicia Dragan2
1Pediatrics, "Grigore T. Popa" University of Medicine and Pharmacy, 700115 Iasi, Romania.
Insights
Pediatric asthma involves oxidative stress impacting lung health. Antioxidants show promise in preventing and managing this chronic respiratory condition in children, improving quality of life.
Area of Science:
- Pediatric Pulmonology
- Respiratory Medicine
- Oxidative Stress Research
Background:
- Bronchial asthma is a leading chronic respiratory disease in children, significantly affecting their quality of life.
- Early childhood pulmonary function deficits are linked to adult respiratory pathologies.
- Airway epithelium acts as a primary defense against pro-oxidative damage, influenced by endogenous and exogenous factors.
Purpose of the Study:
- To review the complex role of oxidative and antioxidative factors in pediatric asthma.
- To highlight the importance of these factors in asthma's occurrence, development, and treatment response.
- To provide insights for future therapeutic strategies targeting oxidative pathways.
Main Methods:
- Comprehensive review of existing scientific literature on pediatric asthma and oxidative stress.
- Analysis of the interplay between pro-oxidative and antioxidative mechanisms in respiratory epithelium.
- Examination of how antioxidant defense influences inflammatory responses and asthma progression.
Main Results:
- Oxidative and antioxidative factors, both internal and external, critically influence asthma pathophysiology.
- Impaired antioxidant defenses contribute to airway remodeling, smooth muscle thickening, bronchoconstriction, and hyper-reactivity.
- Studies confirm the efficacy of antioxidants in the prophylaxis and management of pediatric asthma.
Conclusions:
- Maintaining a balance between oxidative and antioxidative factors is crucial for respiratory health in asthmatic children.
- Understanding these complex pathways can lead to novel therapeutic approaches for pediatric asthma.
- Antioxidant interventions hold significant potential for preventing asthma progression and improving long-term outcomes.
Abstract:
Within the pediatric population, bronchial asthma is one of the most prevalent chronic respiratory system diseases. The number of exacerbations, severity, and duration of symptoms all have a significant impact on children's life quality. In the last decades, the prevention and management strategies of this pathology have focused on maintaining or even increasing the pulmonary function to maximum levels in early childhood, as it has been demonstrated that functional deficits at this level occurring before school age cause pathological manifestations later, in adulthood. The epithelium of the airways and implicitly that of the lung is the first barrier against the lesions caused by pro-oxidative factors. Both oxidative and antioxidative factors can be of endogenous origin (produced by the body) or exogenous (from the environment or diet). Good functioning of antioxidant defense mechanisms from the molecular level to the tissue level, and a balance between pro-oxidative factors and anti- oxidative factors, influence the occurrence of compensatory mechanisms at the level of the respiratory epithelium, causing the delay of local responses to the stress induced by chronic inflammation (bronchial remodeling, thickening of airway smooth muscles, bronchoconstriction, bronchial hyper-reactivity). These mechanisms underlie the pathophysiological changes in asthma. Numerous studies carried out among the pediatric population inclusively have demonstrated the effectiveness of antioxidants in the prophylaxis, slowing down and preventing the progression of this pathology. This review complements the scientific articles, aiming at emphasizing the complexity of oxidative physio-pathological pathways and their importance in the occurrence, development, and therapeutic response in asthma, providing a good understanding of the relationship between oxidative and antioxidative factors, and being a source of future therapeutic strategies.
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