Urinary Extracellular Vesicle-Derived miRNAs Reveal a Coordinated Stress-Response Network Linked to Advanced Glycation End-Products in Children and Adolescents

The widespread consumption of ultra-processed foods increases exposure to advanced glycation end-products (AGEs), key mediators of oxidative stress and chronic low-grade inflammation. Although AGEs contribute to adult metabolic dysfunction, their early molecular correlates in pediatric populations remain insufficiently defined. Extracellular vesicle (EV)-associated miRNAs represent stable, non-invasive indicators of systemic stress responses. This study evaluated the association between urinary AGEs and urinary EV-associated miRNAs in 94 Italian children and adolescents from the I.Family cohort. Fluorescent AGEs were quantified via spectrofluorimetry, and EV-enriched urinary miRNAs were profiled using next-generation sequencing. Differential expression and multivariable generalised linear models (adjusted for age, sex, BMI z-score, and hs-CRP) were performed. Differential expression analysis revealed a significant upregulation of hsa-miR-4516 in participants with high versus low urinary AGE levels (fold change = 2.31; FDR = 0.024). In multivariable continuous models, hsa-miR-4516 remained the primary AGE-associated miRNA, though the association attenuated following adjustment for BMI z-score and hs-CRP. Functional enrichment and network analyses highlighted pathways governing oxidative stress responses, proteostasis, and cellular survival. Overall, urinary EV-associated miRNAs may reflect coordinated biological responses to dietary AGE burden rather than serving as direct exposure biomarkers, offering integrated, non-invasive insights into early metabolic and inflammatory adaptations in children.

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Publication Details

Journal
Antioxidants
Published
2026-09-10
DOI
https://doi.org/10.3390/antiox15091150
Primary Topic
Advanced Glycation End Products research
Type
article
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article

Urinary Extracellular Vesicle-Derived miRNAs Reveal a Coordinated Stress-Response Network Linked to Advanced Glycation End-Products in Children and Adolescents

Pasquale Marena, Ronja Foraita, Alfonso Siani, Antje Hebestreit et al.
Antioxidants
Advanced Glycation End Products research
article

Urinary Extracellular Vesicle-Derived miRNAs Reveal a Coordinated Stress-Response Network Linked to Advanced Glycation End-Products in Children and Adolescents

Pasquale Marena, Ronja Foraita, Alfonso Siani, Antje Hebestreit, Paola Russo, Ivana Sirangelo, Fabio Lauria, Giuseppe Iacomino, Ilenia D’Orsi
article en

Abstract

The widespread consumption of ultra-processed foods increases exposure to advanced glycation end-products (AGEs), key mediators of oxidative stress and chronic low-grade inflammation. Although AGEs contribute to adult metabolic dysfunction, their early molecular correlates in pediatric populations remain insufficiently defined. Extracellular vesicle (EV)-associated miRNAs represent stable, non-invasive indicators of systemic stress responses. This study evaluated the association between urinary AGEs and urinary EV-associated miRNAs in 94 Italian children and adolescents from the I.Family cohort. Fluorescent AGEs were quantified via spectrofluorimetry, and EV-enriched urinary miRNAs were profiled using next-generation sequencing. Differential expression and multivariable generalised linear models (adjusted for age, sex, BMI z-score, and hs-CRP) were performed. Differential expression analysis revealed a significant upregulation of hsa-miR-4516 in participants with high versus low urinary AGE levels (fold change = 2.31; FDR = 0.024). In multivariable continuous models, hsa-miR-4516 remained the primary AGE-associated miRNA, though the association attenuated following adjustment for BMI z-score and hs-CRP. Functional enrichment and network analyses highlighted pathways governing oxidative stress responses, proteostasis, and cellular survival. Overall, urinary EV-associated miRNAs may reflect coordinated biological responses to dietary AGE burden rather than serving as direct exposure biomarkers, offering integrated, non-invasive insights into early metabolic and inflammatory adaptations in children.

AntioxidantsVol. 15(9)
University of Campania "Luigi Vanvitelli" (IT), Institute of Food Science (IT), Leibniz Institute for Prevention Research and Epidemiology - BIPS (DE), National Research Council (IT)
Zero hunger
Openalex Percentile: Top 14%
Advanced Glycation End Products research
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