The Synbiotic Potential of GOS and Lactobacillus reuteri in Improving Gut Comfort and Supporting Brain, Bone and Muscle Development

The initial years of childhood is a crucial stage of development marked by rapid growth and maturation of the gastrointestinal system and immune function, brain growth, and establishment of musculoskeletal function. During this period, nutrition plays a fundamental role not only by providing essential nutrients but also by shaping the gut microbiota, which acts as an important regulator of digestion, metabolism, immunity, and systemic development. Increasing evidence highlights the potential of synbiotic nutrition, combining prebiotics and probiotics, as an effective strategy for maintaining a favorable intestinal environment while promoting broader developmental outcomes. Among commonly studied prebiotic compounds, galacto-oligosaccharides (GOS) have received considerable attention for their role in shaping intestinal microbial communities. They selectively stimulate beneficial intestinal microorganisms, particularly Bifidobacterium, promoting microbial balance while encouraging bacterial fermentation processes that generate health-supporting compounds, including SCFAs. Lactobacillus reuteri is a beneficial bacterial strain naturally present in the gastrointestinal tract and contributes to gut homeostasis through microbial competition, antimicrobial activity, immune modulation, and support for the structural and functional integrity of the intestinal lining. The combined biological effects produced when GOS is used together with L. reuteri create a synbiotic environment that supports better gastrointestinal tolerance and normal intestinal maturation. Beyond gastrointestinal benefits, a growing body of research indicates that intestinal microbial communities may have effects extending beyond the digestive system, involving multiple organ systems through complex communication networks, including the gut-brain axis, gut-bone axis, and gut-muscle axis. Microbial metabolites, immune mediators, and improved nutrient utilization may contribute to neurological maturation, cognitive development, bone mineralization, and muscle growth.

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Publication Details

Journal
International Journal of Gastroenterology
Published
2026-09-29
DOI
https://doi.org/10.11648/j.ijg.20261002.14
Primary Topic
Gut microbiota and health
Type
article
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article

The Synbiotic Potential of GOS and Lactobacillus reuteri in Improving Gut Comfort and Supporting Brain, Bone and Muscle Development

Belfar Hossain, Alomgir Hossain, Mehedi Hasan, Swapan Halder et al.
International Journal of Gastroenterology
Gut microbiota and health
article

The Synbiotic Potential of GOS and Lactobacillus reuteri in Improving Gut Comfort and Supporting Brain, Bone and Muscle Development

Belfar Hossain, Alomgir Hossain, Mehedi Hasan, Swapan Halder, Faisal Hasan, Moin Talukder
article en

Abstract

The initial years of childhood is a crucial stage of development marked by rapid growth and maturation of the gastrointestinal system and immune function, brain growth, and establishment of musculoskeletal function. During this period, nutrition plays a fundamental role not only by providing essential nutrients but also by shaping the gut microbiota, which acts as an important regulator of digestion, metabolism, immunity, and systemic development. Increasing evidence highlights the potential of synbiotic nutrition, combining prebiotics and probiotics, as an effective strategy for maintaining a favorable intestinal environment while promoting broader developmental outcomes. Among commonly studied prebiotic compounds, galacto-oligosaccharides (GOS) have received considerable attention for their role in shaping intestinal microbial communities. They selectively stimulate beneficial intestinal microorganisms, particularly Bifidobacterium, promoting microbial balance while encouraging bacterial fermentation processes that generate health-supporting compounds, including SCFAs. Lactobacillus reuteri is a beneficial bacterial strain naturally present in the gastrointestinal tract and contributes to gut homeostasis through microbial competition, antimicrobial activity, immune modulation, and support for the structural and functional integrity of the intestinal lining. The combined biological effects produced when GOS is used together with L. reuteri create a synbiotic environment that supports better gastrointestinal tolerance and normal intestinal maturation. Beyond gastrointestinal benefits, a growing body of research indicates that intestinal microbial communities may have effects extending beyond the digestive system, involving multiple organ systems through complex communication networks, including the gut-brain axis, gut-bone axis, and gut-muscle axis. Microbial metabolites, immune mediators, and improved nutrient utilization may contribute to neurological maturation, cognitive development, bone mineralization, and muscle growth.

International Journal of GastroenterologyVol. 10(2)
University of Barishal (BD), Sher-e-Bangla Agricultural University (BD)
Openalex Percentile: Top 20%
Gut microbiota and health
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