Insulin Resistance during normal child growth and development is associated with a distinct blood metabolic phenotype

Joanne Hosking1, Jonathan Pinkney1, Alison Jeffery1

  • 1Faculty of Medicine and Dentistry, Plymouth University, Plymouth, UK.

Pediatric Diabetes
|June 30, 2019
PubMed

Insights

Insulin resistance (IR) in children is linked to specific metabolic changes, with altered branched-chain amino acids (BCAA) and lactate levels observed longitudinally. These findings reveal distinct metabolite signatures of insulin action during childhood development.

Area of Science:

  • Pediatric Endocrinology
  • Metabolomics
  • Childhood Growth and Development

Background:

  • Insulin resistance (IR) in adults has known metabolite signatures.
  • Longitudinal studies in healthy children are scarce to confirm these associations.
  • Investigating childhood metabolite signatures and IR is crucial for understanding early metabolic health.

Purpose of the Study:

  • To investigate the association of serum metabolites with insulin resistance (IR) in healthy children.
  • To perform longitudinal association analyses between serum metabolites and IR using the Earlybird cohort.
  • To differentiate metabolite signatures that precede or follow the development of IR in childhood.

Main Methods:

  • Utilized the longitudinal Earlybird cohort with annual measurements from age 5 to 16 years.
  • Conducted longitudinal association analyses between individual serum metabolites and homeostatic model assessment of insulin resistance (HOMA-IR).
  • Accounted for covariates including age, growth, puberty, adiposity, and physical activity.

Main Results:

  • Insulin resistance (IR) was higher in girls and associated with increasing body mass index (BMI).
  • Longitudinal analysis revealed IR associated with reduced branched-chain amino acids (BCAA), 2-ketobutyrate, citrate, and 3-hydroxybutyrate.
  • Elevated lactate and alanine concentrations were associated with IR, indicating widespread biochemical consequences.

Conclusions:

  • Longitudinal analysis can distinguish metabolite signatures preceding or following IR development.
  • In healthy children, higher IR is linked to reduced BCAA, ketogenesis, and fuel oxidation.
  • Elevated lactate concentrations preceded increased IR, contrasting with findings in obese populations.
Abstract

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