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Bronchial Thermoplasty: A Novel Therapeutic Approach to Severe Asthma
Published on: November 4, 2010
Mechanisms Mediating Pediatric Severe Asthma and Potential Novel Therapies
Aldara Martin Alonso1, Sejal Saglani1,2
1Inflammation, Repair and Development Section, National Heart and Lung Institute, Imperial College London, London, United Kingdom.
Insights
Severe therapy-resistant asthma in children is a significant unmet need, with limited understanding of its diverse mechanisms. Further research into pediatric severe asthma pathophysiology is crucial for developing targeted, personalized treatments.
Area of Science:
- Pediatric Pulmonology
- Immunology
- Respiratory Medicine
Background:
- Severe therapy-resistant asthma in children causes significant morbidity and high healthcare costs.
- Current treatments like omalizumab have limitations, leaving a substantial unmet clinical need.
- Pediatric severe asthma is heterogeneous, with distinct drivers from adult disease due to a developing immune system and lung growth.
Purpose of the Study:
- To review current data on the pathophysiology of pediatric severe asthma.
- To highlight potential therapeutic targets for novel treatments.
- To emphasize the need for age-appropriate mechanistic studies for personalized medicine.
Main Methods:
- Review of current scientific literature on pediatric severe asthma.
- Analysis of factors contributing to disease heterogeneity.
- Discussion of challenges and requirements for mechanistic studies in children.
Main Results:
- Children with severe asthma often exhibit severe allergies, steroid-resistant eosinophilia, and airway remodeling.
- Omalizumab is the sole licensed add-on therapy but is unsuitable for about two-thirds of patients.
- Understanding the unique pathophysiology of pediatric severe asthma is limited.
Conclusions:
- Pediatric severe asthma requires novel therapeutic strategies beyond current options.
- Mechanistic studies using pediatric-specific models and samples are essential.
- Advancing personalized medicine approaches is critical for improving treatment outcomes.
Abstract:
Although a rare disease, severe therapy-resistant asthma in children is a cause of significant morbidity and results in utilization of approximately 50% of health-care resources for asthma. Improving control for children with severe asthma is, therefore, an urgent unmet clinical need. As a group, children with severe asthma have severe and multiple allergies, steroid resistant airway eosinophilia, and significant structural changes of the airway wall (airway remodeling). Omalizumab is currently the only add-on therapy that is licensed for use in children with severe asthma. However, limitations of its use include ineligibility for approximately one-third of patients because of serum IgE levels outside the recommended range and lack of clinical efficacy in a further one-third. Pediatric severe asthma is thus markedly heterogeneous, but our current understanding of the different mechanisms underpinning various phenotypes is very limited. We know that there are distinctions between the factors that drive pediatric and adult disease since pediatric disease develops in the context of a maturing immune system and during lung growth and development. This review summarizes the current data that give insight into the pathophysiology of pediatric severe asthma and will highlight potential targets for novel therapies. It is apparent that in order to identify novel treatments for pediatric severe asthma, the challenge of undertaking mechanistic studies using age appropriate experimental models and airway samples from children needs to be accepted to allow a targeted approach of personalized medicine to be achieved.
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