Organic changes in the central nervous system in children on chronic inhaled corticosteroid therapy

M Michalczuk1, A J Sybilski, A Piliszek

  • 1Department of the Prevention of Environmental Hazards and Allergology, Warsaw Medical University, Warsaw, Poland.

Insights

Long-term inhaled corticosteroids (ICS) for childhood asthma may be linked to brain changes. This study found small subcortical hyperintense foci and mild cortical atrophy in children using ICS, suggesting potential organic CNS alterations.

Area of Science:

  • Pediatric Neurology
  • Respiratory Medicine
  • Neuroimaging

Background:

  • Childhood asthma is a common chronic respiratory condition.
  • Long-term management often involves inhaled corticosteroids (ICS).
  • Potential central nervous system (CNS) effects of chronic ICS use in children require investigation.

Purpose of the Study:

  • To analyze the impact of chronic inhaled corticosteroid therapy on CNS changes in children with asthma.
  • To assess for structural brain alterations associated with long-term ICS use.

Main Methods:

  • Magnetic resonance imaging (MRI) was used to evaluate the brains of 11 children (8-17 years) with asthma on ICS for at least 4 years.
  • Participants also underwent neurological examinations and spirometry.
  • Standard MRI sequences (T1, T2, FLAIR, DWI) were acquired and analyzed.

Main Results:

  • Pediatric and neurological examinations were normal in all participants.
  • MRI revealed small subcortical hyperintense foci in six children, with three having multiple small lesions (<3 mm).
  • Mild supratentorial cortical atrophy was observed in four children; the cerebellum appeared normal.

Conclusions:

  • Chronic inhaled corticosteroid use in children with asthma is associated with findings of small subcortical hyperintense foci and mild supratentorial cortical atrophy.
  • These results suggest a potential link between ICS exposure and organic CNS changes in pediatric asthma patients.
  • Further research is necessary to fully understand the extent and long-term psychomotor implications of ICS-induced brain changes in children.

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