Application of Metabolomics in Pediatric Asthma: Prediction, Diagnosis and Personalized Treatment

Maria Michelle Papamichael1,2, Charis Katsardis3, Evangelia Sarandi4,5

  • 1Department of Dietetics, Human Nutrition & Sport, School of Allied Health, Human Services & Sport, La Trobe University, Melbourne 3086, Australia.

Metabolites
|April 30, 2021
PubMed

Insights

Metabolomics, the study of small molecules, offers new insights into pediatric asthma. This approach can identify early biomarkers for better diagnosis and personalized treatments, reducing healthcare costs.

Area of Science:

  • Pediatric Pulmonology
  • Biochemistry
  • Systems Biology

Background:

  • Pediatric asthma affects 5-20% of European children, presenting a significant public health issue with high healthcare costs.
  • Asthma is a heterogeneous respiratory disorder with diverse clinical presentations, making accurate diagnosis challenging.
  • Current management focuses on identifying early diagnostic biomarkers and non-invasive monitoring of airway inflammation.

Purpose of the Study:

  • To review the utility of metabolomics in understanding pediatric asthma.
  • To analyze intermediate metabolites in key biochemical pathways relevant to asthma.
  • To discuss the clinical application, challenges, and future directions of metabolomics in pediatric asthma management.

Main Methods:

  • Systematic analysis of small molecules (metabolomics).
  • Examination of metabolites from carbohydrate, amino acid, lipid, organic acid, and nucleotide pathways.
  • Literature review of existing evidence on metabolomics in pediatric asthma.

Main Results:

  • Metabolomics provides insights into asthma pathophysiology by analyzing biochemical pathways.
  • Potential for identifying early diagnostic biomarkers and enabling personalized therapies.
  • Highlights the role of gene-environment interactions in asthma development.

Conclusions:

  • Metabolomics holds promise for improving pediatric asthma diagnosis and management.
  • Further research is needed to overcome challenges in integrating metabolomics into clinical practice.
  • Personalized treatment strategies based on metabolomic profiles can reduce disease burden.

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