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Evidence for a causal relationship between allergic sensitization and rhinovirus wheezing in early life
Daniel J Jackson1, Michael D Evans, Ronald E Gangnon
1University of Wisconsin, Madison, 53792, USA. djj@medicine.wisc.edu
Insights
Allergic sensitization precedes virus-induced wheezing in children, particularly human rhinovirus (HRV) infections. This finding suggests preventing sensitization may reduce wheezing and asthma development.
Area of Science:
- Pediatric Allergy and Immunology
- Respiratory Medicine
- Epidemiology
Background:
- Aeroallergen sensitization and virus-induced wheezing are key risk factors for childhood asthma.
- The precise developmental sequence between these factors remains unclear.
Purpose of the Study:
- To clarify the temporal relationship between aeroallergen sensitization and virus-induced wheezing in high-risk children.
Main Methods:
- Prospective follow-up of 285 high-risk infants from birth to age 6.
- Annual assessment of aeroallergen sensitization and viral wheezing etiology.
- Longitudinal multistate Markov modeling to analyze event sequences.
Main Results:
- Allergic sensitization increased the risk of viral wheeze (HR 1.9), especially with human rhinovirus (HRV).
- The risk was highest at 1 year but consistently elevated across all ages.
- Virus-induced wheezing did not increase the risk of subsequent allergic sensitization (HR 0.76).
Conclusions:
- Allergic sensitization demonstrably precedes HRV-induced wheezing in children.
- This sequence supports a causal role for sensitization in severe HRV lower respiratory illness.
- Interventions targeting allergic sensitization may prevent wheezing and asthma.
Rationale:
Aeroallergen sensitization and virus-induced wheezing are risk factors for asthma development during early childhood, but the temporal developmental sequence between them is incompletely understood.
Objective:
To define the developmental relationship between aeroallergen sensitization and virus-induced wheezing.
Methods:
A total of 285 children at high risk for allergic disease and asthma were followed prospectively from birth. The timing and etiology of viral respiratory wheezing illnesses were determined, and aeroallergen sensitization was assessed annually for the first 6 years of life. The relationships between these events were assessed using a longitudinal multistate Markov model.
Measurements And Main Results:
Children who were sensitized to aeroallergens had greater risk of developing viral wheeze than nonsensitized children (hazard ratio [HR], 1.9; 95% confidence interval [CI], 1.2-3.1). Allergic sensitization led to an increased risk of wheezing illnesses caused by human rhinovirus (HRV) but not respiratory syncytial virus. The absolute risk of sensitized children developing viral wheeze was greatest at 1 year of age; however, the relative risk was consistently increased at every age assessed. In contrast, viral wheeze did not lead to increased risk of subsequent allergic sensitization (HR, 0.76; 95% CI, 0.50-1.1).
Conclusions:
Prospective, repeated characterization of a birth cohort demonstrated that allergic sensitization precedes HRV wheezing and that the converse is not true. This sequential relationship and the plausible mechanisms by which allergic sensitization can lead to more severe HRV-induced lower respiratory illnesses support a causal role for allergic sensitization in this developmental pathway. Therefore, therapeutics aimed at preventing allergic sensitization may modify virus-induced wheezing and the development of asthma.
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