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The Gut Microbiota: An Essential Component in Understanding Pediatric Obesity: A Narrative Review
Vasile Valeriu Lupu1, Alin Horatiu Nedelcu1, Reka Borka-Balas2
1Grigore T. Popa University of Medicine and Pharmacy, 700115 Iasi, Romania.
Insights
Pediatric obesity is linked to gut microbiome changes, with an increased Firmicutes-to-Bacteroidetes ratio observed. Interventions like diet and probiotics may help restore microbial balance and manage childhood obesity.
Area of Science:
- Microbiome research
- Pediatric health
- Metabolic disorders
Background:
- Childhood obesity is a global public health issue.
- Gut microbiome alterations are increasingly implicated in pediatric obesity development.
- Understanding this link offers new avenues for prevention and treatment.
Purpose of the Study:
- To review and analyze recent studies on gut microbiome alterations in children with obesity.
- To highlight insights into the relationship between gut microbiota and pediatric obesity.
- To explore potential implications for disease management.
Main Methods:
- Narrative review of studies from PubMed and Web of Science.
- Manual screening of reference lists of relevant articles.
- Synthesis of current research on pediatric obesity and gut microbiome.
Main Results:
- Obese children show reduced microbial diversity and a higher Firmicutes-to-Bacteroidetes ratio.
- Gut dysbiosis in obesity is associated with increased energy harvest and lipid absorption.
- Dietary changes and physical activity can positively influence gut microbiota patterns.
Conclusions:
- The gut microbiome plays a role in pediatric obesity, with specific bacterial ratios being critical.
- Interventions targeting the gut microbiome, such as probiotics, show potential for managing childhood obesity.
- Further research is needed to establish causality and clinical efficacy of microbiome-based therapies.
Abstract:
Background: Childhood obesity has become a major public health concern worldwide. Increasing evidence suggests that alterations in the gut microbiome may play a significant role in the development and progression of pediatric obesity. This narrative review synthesizes and analyzes recent studies investigating microbiome alterations in children with obesity, highlighting emerging insights and their potential implications for disease management. Understanding the relationship between gut microbial composition and obesity may provide new perspectives for prevention and therapeutic strategies in overweight pediatric populations. This narrative review was conducted through a search of major biomedical databases, including PubMed and Web of Science, complemented by manual screening of reference lists of relevant articles. Key findings: Children affected by obesity exhibit significant changes in gut microbiome composition, characterized by reduced microbial diversity and predominance of the Firmicutes and Bacteroidetes phyla. The balance between these two bacterial groups appears critical for maintaining gut homeostasis. Studies consistently report an increased Firmicutes-to-Bacteroidetes ratio in children with elevated body weight, suggesting that disruption of this balance may contribute to metabolic dysregulation and obesity-related pathologies. Given the essential role of the gut microbiota in nutrient metabolism and energy extraction, dysbiosis in obesity is associated with enhanced energy harvest and lipid absorption. Certain bacterial populations may promote increased caloric uptake, thereby contributing to weight gain and adiposity. Multidimensional interventions, including dietary modification and physical activity, have demonstrated the potential to reduce obesogenic microbiota patterns and restore microbial diversity. Additionally, probiotic supplementation is being investigated as a strategy to reestablish microbial homeostasis and potentially support body mass index reduction. Despite promising findings, further research is required to clarify mechanisms, establish causality, and determine the clinical effectiveness of microbiome-targeted therapies before they can be fully integrated into the management of pediatric obesity.
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