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Published on: August 7, 2017
Risk Factors and Mechanisms Leading to Preschool Recurrent Wheeze and Asthma
Jose A Castro-Rodriguez1, Alba A B Wolters2, Carlos E Rodriguez-Martinez3
1Department of Pediatric Pulmonology, Division of Pediatrics, School of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile.
Insights
Preschool recurrent wheezing is complex, influenced by many factors. Understanding these elements is key to developing better treatments and preventing childhood asthma.
Area of Science:
- Pediatric Pulmonology
- Environmental Health
- Genetics
Background:
- Preschool recurrent wheezing is common and can lead to childhood asthma.
- It's a complex condition influenced by biological, environmental, and psychosocial factors.
Purpose of the Study:
- To review the multifactorial influences on preschool recurrent wheezing.
- To discuss biomarkers, clinical indices, and diagnostic tools for this condition.
- To highlight areas for future research in personalized interventions.
Main Methods:
- Literature review of genetic, environmental, and clinical factors.
- Analysis of biomarkers and diagnostic tests for preschool wheezing.
- Discussion of pathophysiological insights from lower airway samples.
Main Results:
- Specific genes and CpG methylation are linked to airway remodeling and inflammation.
- Biomarkers like allergen sensitization and FeNO can guide treatment.
- Current lung function tests have limitations in diagnosing asthma in preschoolers.
Conclusions:
- Preschool wheezing requires a multifactorial approach considering genetics, environment, and behavior.
- Personalized treatment strategies are needed, informed by biomarkers and advanced diagnostics.
- Future research should integrate diverse factors to improve prediction and intervention for preschool wheeze and asthma.
Abstract:
Preschool recurrent wheezing is a prevalent and heterogeneous condition that can develop into childhood asthma, significantly damaging public health. Preschool recurrent wheeze and asthma are influenced by a multifactorial interplay of biological, environmental, early life, behavioral, and psychosocial factors. Genes such as Gasdermin B, Orosomucoid 1-like 3, Cadherin-related family member 3, Annexin A1, and IL33/IL1RL1, and the methylation of cell-type-specific CpG sites are associated with airway-remodeling, increased inflammatory responses, and enhanced susceptibility to environmental factors. Biomarkers such as allergen sensitization, blood eosinophil levels, FeNO, and volatile organic compounds may guide treatment decisions based on the type of immune response in wheezing episodes. Several asthma-predicted clinical indices have been developed, and some have been validated. Although lower airway samples obtained through bronchoalveolar lavage and biopsy in young children are limited, they are essential in understanding the pathophysiology and developing personalized treatment of recurrent preschool wheezing. Early evaluations of lung function, airway hyperresponsiveness, and bronchodilator response can be valuable objective tools. However, because of physiologic variability and inconsistent methods and definitions, these tests cannot confirm or rule out a diagnosis of asthma at preschool age. Future research should investigate the interplay of factors across biological, environmental, and social domains to enhance predictive models and inform targeted interventions that promote health equity and reduce the global burden of preschool recurrent wheeze and asthma.
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