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Updated: Jan 22, 2026

Differentiated Mouse Adipocytes in Primary Culture: A Model of Insulin Resistance
Published on: February 17, 2023
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.
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.
Background:
While insulin resistance (IR) is associated with specific metabolite signatures in adults, there have been few truly longitudinal studies in healthy children, either to confirm which abnormalities are present, or to determine whether they precede or result from IR. Therefore, we investigated the association of serum metabolites with IR in childhood in the Earlybird cohort.
Methods:
The Earlybird cohort is a well-characterized cohort of healthy children with annual measurements from age 5 to 16 years. For the first time, longitudinal association analyses between individual serum metabolites and homeostatic model assessment (HOMA) of insulin resistance (HOMA-IR) have been performed taking into account the effects of age, growth, puberty, adiposity, and physical activity.
Results:
IR was higher in girls than in boys and was associated with increasing body mass index (BMI). In longitudinal analysis IR was associated with reduced concentrations of branched-chain amino acids (BCAA), 2-ketobutyrate, citrate and 3-hydroxybutyrate, and higher concentrations of lactate and alanine. These findings demonstrate the widespread biochemical consequences of IR for intermediary metabolism, ketogenesis, and pyruvate oxidation during normal child growth and development.
Conclusions:
Longitudinal analysis can differentiate metabolite signatures that precede or follow the development of greater levels of IR. In healthy normal weight children, higher levels of IR are associated with reduced levels of BCAA, ketogenesis, and fuel oxidation. In contrast, elevated lactate concentrations preceded the rise in IR. These changes reveal the metabolite signature of insulin action during normal growth, and they contrast with previous findings in obese children and adults that represent the consequences of IR and obesity.
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