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Updated: Aug 5, 2025

Sample Preparation to Bioinformatics Analysis of DNA Methylation: Association Strategy for Obesity and Related Trait Studies
Published on: May 6, 2022
Childhood Obesity and the Cryptic Language of the Microbiota: Metabolomics' Upgrading
Alice Bosco1, Michele Loi1, Giulia Pinna1
1Department of Surgical Sciences, University of Cagliari and Neonatal Intensive Care Unit, AOU Cagliari, 09124 Cagliari, Italy.
Insights
Childhood obesity is a growing concern with complex causes. Metabolomics offers a promising approach to identify biomarkers and understand metabolic profiles in obese children, aiding prevention and intervention.
Area of Science:
- Pediatric Endocrinology
- Metabolomics
- Microbiome Research
Background:
- Childhood obesity presents significant physical, psychological, and economic challenges.
- The complex metabolic mechanisms underlying obesity are not fully understood.
- While lifestyle is a major factor, genetic and syndromic causes exist in a minority of cases.
Purpose of the Study:
- To explore the role of metabolomics in understanding childhood obesity.
- To identify specific biomarkers and altered metabolic pathways in obese children.
- To investigate the interplay between host, diet, and microbiota in obesity development.
Main Methods:
- Utilizing metabolomics to analyze biological behavior and response to stimuli.
- Characterizing differentiated metabolic profiles in obese pediatric populations.
- Investigating the host-diet-microbiota interaction through metabolic profiling.
Main Results:
- Evidence suggests altered microbiota contributes to obesity etiology.
- Distinct metabolic profiles and characteristic metabolites are observed in obese children.
- Metabolomics can reveal individual biological responses to external factors.
Conclusions:
- Metabolomics holds potential for effective screening and prevention of childhood obesity.
- Understanding metabolic profiles can guide personalized dietary interventions.
- Further research is needed to fully elucidate the host-diet-microbiota interactions in pediatric obesity.
Abstract:
The growing obesity epidemic in childhood is increasingly concerning for the related physical and psychological consequences, with a significant impact on health care costs in both the short and the long term. Nonetheless, the scientific community has not yet completely clarified the complex metabolic mechanisms underlying body weight alterations. In only a small percentage of cases, obesity is the result of endocrine, monogenic, or syndromic causes, while in much more cases, lifestyle plays a crucial role in obesity development. In this context, the pediatric age appears to be of considerable importance as prevention strategies together with early intervention can represent important therapeutic tools not only to counteract the comorbidities that increasingly affect children but also to hinder the persistence of obesity in adulthood. Although evidence in the literature supporting the alteration of the microbiota as a critical factor in the etiology of obesity is abundant, it is not yet fully defined and understood. However, increasingly clear evidence is emerging regarding the existence of differentiated metabolic profiles in obese children, with characteristic metabolites. The identification of specific pathology-related biomarkers and the elucidation of the altered metabolic pathways would therefore be desirable in order to clarify aspects that are still poorly understood, such as the consequences of the interaction between the host, the diet, and the microbiota. In fact, metabolomics can characterize the biological behavior of a specific individual in response to external stimuli, offering not only an eventual effective screening and prevention strategy but also the possibility of evaluating adherence and response to dietary intervention.
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