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March 16, 2026Journal of clinical lipidology0 citationsOpen Access

Early Metabolic Alterations in Pediatric Obesity: Depot-Specific Insights from Untargeted Adipose Tissue Metabolomics

ÁLÁngeles López-GonzálvezCMCristina Muñoz-San MartínASAndrea Soria-Gondek

Key Points

  • This research aims to explore metabolic differences between subcutaneous and visceral adipose tissues in children with obesity.
  • Collected adipose tissue samples from children with overweight/obesity and normal weight.
  • Used untargeted metabolomics examined via capillary electrophoresis-mass spectrometry (CE-MS).
  • Analyzed free fatty acids using liquid chromatography-mass spectrometry (LC-MS).
  • Visceral adipose tissue (vWAT) showed 24 significantly altered metabolites, indicating pronounced changes in those with obesity.
  • vWAT exhibited elevated ketone bodies and TCA cycle intermediates, suggesting higher lipotoxicity.
  • Subcutaneous adipose tissue (sWAT) had fewer alterations, marked by increases in glutamate and short-chain free fatty acids.

Abstract

Objective:Childhood obesity is associated with lifelong metabolic risk, yet depot-specific alterations in adipose tissue metabolism during early life remain poorly understood.This study aimed to characterize the J o u r n a l P r e -p r o o f 2 metabolic differences between subcutaneous (sWAT) and visceral (vWAT) white adipose tissue in pediatric obesity using untargeted metabolomics. Methods:Adipose tissue samples were collected from 12 children with overweight/obese (OW/OB) and 18 who were of normal weight.Untargeted metabolomics was performed using capillary electrophoresis-mass spectrometry (CE-MS) to profile polar metabolites in sWAT and vWAT, and free fatty acids (FFAs) were analyzed using liquid chromatography-mass spectrometry (LC-MS). Results:Comparison of OW/OB versus NW children revealed pronounced depot-specific heterogeneity.vWAT in OW/OB children exhibited 24 significantly altered metabolites compared to NW controls.This visceral profile was characterised by elevated ketone bodies (3-hydroxybutyrate and acetoacetic acid), TCA cycle intermediates (citric and pyruvic acids), and long-chain FFAs (palmitic and oleic acids).Concurrently, amino acid imbalances, specifically elevated leucine and arginine but reduced histidine and carnosine, suggested heightened mitochondrial stress and inflammation.In contrast, sWAT from OW/OB children showed fewer variations (12 metabolites), defined primarily by elevated glutamate, leucine, and short-chain FFAs, reflecting a milder metabolic disruption.Direct comparison between depots revealed that vWAT was enriched in amino acids and carnitine, while sWAT showed relatively higher levels of glycolytic and ketone body intermediates in NW conditions. Conclusions:Depot-specific metabolic differences are evident in pediatric obesity.vWAT in OW/OB children displays a metabolic profile consistent with heightened lipotoxicity and mitochondrial stress, whereas sWAT exhibits fewer, less pronounced metabolic differences.

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Cite This Study

López-Gonzálvez et al. (2026) studied this question.

synapsesocial.com/papers/69b79df38166e15b153ab1c3https://doi.org/10.1016/j.jacl.2026.03.003
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Subcutaneous and visceral adipose tissue lipidome in children reveals novel lipid species involved in obesity2026
  2. 2Adipose tissue dysregulation and metabolic consequences in childhood and adolescent obesity: potential impact of dietary fat quality2014 · 41 citations
  3. 3Metabolomics of abdominal adipose tissue samples collected from patients with obesity – a critical review2025
  4. 4Impaired Insulin Sensitivity and Elevated Ectopic Fat in Healthy Obese vs. Nonobese Prepubertal Children2011 · 66 citations
  5. 5Depot-specific differences in fatty acid composition and distinct associations with lipogenic gene expression in abdominal adipose tissue of obese women2017 · 39 citations