Bacteria and viruses and their role in the preschool wheeze to asthma transition

Nikolaos G Papadopoulos1,2, Evaggelia Apostolidou3, Michael Miligkos1

  • 1Allergy Department, 2nd Pediatric Clinic, National and Kapodistrian University of Athens, Athens, Greece.

Insights

Early-life wheezing, often from viral infections like rhinoviruses, is a risk factor for persistent childhood asthma. Most wheezing infants don't develop asthma, but factors like genetics and allergies influence disease persistence.

Area of Science:

  • Pediatric respiratory medicine
  • Infectious disease epidemiology
  • Immunology

Background:

  • Wheezing in early life, frequently viral-induced, is a key risk factor for persistent asthma.
  • Respiratory viruses (e.g., rhinoviruses) and bacteria are associated with wheezing and asthma exacerbations.
  • Airway remodeling can begin between 1-3 years, preceding formal asthma diagnosis.

Purpose of the Study:

  • To summarize current knowledge on infection epidemiology in childhood asthma.
  • To describe the impact of individual infectious agents on asthma development.
  • To explore mechanisms transitioning recurrent wheeze to persistent asthma.

Main Methods:

  • Review of current scientific literature on viral and bacterial infections in childhood asthma.
  • Analysis of epidemiological data on infection prevalence and asthma outcomes.
  • Examination of immunological and genetic factors influencing disease progression.

Main Results:

  • Rhinoviruses are the primary viral triggers for early-life wheezing and asthma exacerbations.
  • Bacterial presence, including common respiratory pathogens, is linked to wheezing and acute asthma.
  • Genetic factors and environmental exposures (exposome) play a significant role in early airway changes and disease severity.
  • While most children with viral-induced wheeze do not develop chronic asthma, factors like viral type, allergic sensitization, and illness severity influence persistence.

Conclusions:

  • Infections, particularly viral, are central to the development and exacerbation of childhood asthma.
  • Understanding the interplay between infections, genetics, allergies, and the exposome is crucial for predicting asthma persistence.
  • Further research into specific agents and mechanisms can inform targeted prevention and treatment strategies for pediatric asthma.

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