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Published on: May 10, 2024
Preventing progression of preschool wheezing to asthma: Opportunities for intervention
1National Heart & Lung Institute, Imperial Biomedical Research Centre and Imperial Centre for Paediatrics & Child Health, Imperial College London, London, UK.
Insights
Recurrent wheezing in young children is complex. Novel treatments targeting specific pathways, not just eosinophilia, are needed for secondary asthma prevention.
Area of Science:
- Pediatric Pulmonology
- Asthma Pathogenesis
- Allergy and Immunology
Background:
- Recurrent preschool wheeze is heterogeneous, driven by diverse genetic and environmental factors.
- Current treatments like inhaled corticosteroids targeting eosinophilia lack disease-modifying effects.
- Early airway remodeling and distinct underlying mechanisms necessitate targeted therapeutic strategies.
Purpose of the Study:
- To review novel targets and approaches for secondary asthma prevention in preschool wheeze.
- To highlight potential harms of indiscriminate interventions.
- To identify challenges in developing tailored treatments.
Main Methods:
- Literature review of current evidence on preschool wheeze.
- Analysis of potential therapeutic targets including bacterial infections and neutrophilia.
- Discussion of challenges in clinical trial design and biomarker development.
Main Results:
- Airway eosinophilia targeted treatments are not disease-modifying.
- Emerging evidence suggests roles for lower airway bacterial infection and neutrophilia.
- Preliminary data supports bacterial lysates for infection-associated wheeze, but long-term effects are unknown.
Conclusions:
- Targeting specific pathophysiological pathways is crucial for disease modification in preschool wheeze.
- Further research is needed on bacterial infections, neutrophilia, and novel agents like bacterial lysates.
- Tailored interventions, validated biomarkers, and long-term follow-up are essential for effective secondary asthma prevention.
Abstract:
Recurrent wheezing in preschool children is heterogeneous and results from numerous genetic and environmental risk factors, which result in the same final clinical manifestation of acute episodes of wheezing but have distinct underlying mechanisms. Effective disease-modifying approaches, therefore, need to target the pathways driving the symptoms. We have good evidence to show that targeting airway eosinophilia alone in early-life preschool wheezing and using inhaled corticosteroids is not disease-modifying. Although airway remodelling develops early in preschool wheezing, the challenge is identifying suitable treatments for structural airway changes. There is increasing evidence for the role of lower airway bacterial infection contributing to wheeze episodes, but clinical trials investigating the impact of targeted antibiotic treatment on disease modification are needed. There is also increasing data supporting an association between lower airway neutrophilia and wheezing in a subgroup of preschool children, but direct causation and the role of neutrophil function remain unknown. Finally, there is encouraging preliminary data for the role of inactivated mixed bacterial lysates in children with non-allergic, infection-associated wheeze episodes, but the impact on longer-term outcomes and their mechanism of action is unknown. This review outlines a range of potential novel targets and approaches that may enable secondary prevention of asthma from preschool wheezing. In parallel, the potential for harm when interventions are introduced indiscriminately is highlighted. Some of the challenges that need to be addressed, including trial designs allowing tailored interventions, the need for non-invasive biomarkers for targeted interventions, and ensuring extended and long-term follow-up after intervention, are highlighted.
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