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Sample Preparation to Bioinformatics Analysis of DNA Methylation: Association Strategy for Obesity and Related Trait Studies
Published on: May 6, 2022
Systematic Review: Exosomes as Molecular Messengers in the Development of Obesity-Related Complications in Children
Kamila Szeliga1, Dominika Krakowczyk1, Marcin Chyra2
1Upper Silesian Child Health Center in Katowice, The Medical University of Silesia in Katowice, Medykow 16 Street Katowice, 40-752 Katowice, Poland.
Insights
Extracellular vesicles (EVs) are key messengers in pediatric obesity, driving organ damage and metabolic issues. Understanding EVs offers potential for early detection and targeted therapies for childhood obesity complications.
Area of Science:
- Biomedical Science
- Molecular Biology
- Pediatric Research
Background:
- Pediatric obesity is linked to multi-organ complications.
- Extracellular vesicles (EVs), particularly exosomes, act as critical molecular messengers.
- EVs mediate intercellular communication contributing to disease pathogenesis.
Purpose of the Study:
- To synthesize current knowledge on EVs-mediated communication in pediatric obesity.
- To explore the role of EVs in inflammation, insulin resistance, and endothelial dysfunction.
- To review the diagnostic and therapeutic potential of EVs in obesity-related conditions.
Main Methods:
- Scoping review of emerging evidence.
- Analysis of data on EV cargo (miRNAs, proteins, lipids).
- Examination of maternal obesity effects on breast milk EVs.
Main Results:
- Adipose- and endothelial-derived EVs carry bioactive cargo that exacerbates metabolic derangements and vascular injury.
- Maternal obesity impacts breast milk EVs, influencing offspring metabolic programming.
- EVs show diagnostic and therapeutic potential in conditions like MAFLD, renal injury, and cardiovascular dysfunction.
Conclusions:
- Standardization of EV isolation and profiling in pediatric research is needed.
- Large-scale longitudinal studies are essential to validate findings.
- Understanding EVs biology can advance early detection and targeted therapies for childhood obesity.
Abstract:
Emerging evidence highlights extracellular vesicles (EVs), especially exosomes, as critical molecular messengers linking pediatric obesity to multi-organ complications. This scoping review synthesizes current knowledge on EVs-mediated intercellular communication that exacerbates inflammation, insulin resistance, endothelial dysfunction and organ-specific damage. Data demonstrate that adipose- and endothelial-derived EVs carry bioactive cargo, microRNAs, proteins, and lipids, that modulate key pathways driving metabolic derangements and vascular injury, often preceding detectable clinical biomarkers. Notably, maternal obesity influences EVs composition in breast milk, shaping early-life metabolic programming and offspring risk of obesity. Recent studies underscore the diagnostic and therapeutic potential of EVs in obesity-related conditions such as metabolic-associated fatty liver disease (MAFLD), early renal injury, and cardiovascular dysfunction in children. Furthermore, EVs released in response to exercise or bariatric surgery may mediate systemic metabolic improvements, offering a novel window into personalized interventions. Despite promising findings, standardization of EV isolation and profiling in pediatric research is lacking, and large-scale longitudinal studies are urgently needed. By deepening our understanding of EVs biology, clinicians may advance early detection, risk stratification, and targeted therapies to interrupt the progression from childhood obesity to lifelong metabolic and cardiovascular disease.
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