Bioaccessibility and Bioavailability of Minerals in Relation to a Healthy Gut Microbiome
Биодоступность и биоусвояемость минералов в связи со здоровым микробиомом кишечника
2021-06-24
SCID: 54.1/b8y864fw
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gut microbiotamineral bioaccessibilitymineral bioavailabilityprobioticssport nutrition
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Abstract (AI)
Adequate amounts of a wide range of micronutrients are needed by body tissues to maintain health. Dietary intake must be sufficient to meet these micronutrient requirements. Mineral deficiency does not seem to be the result of a physically active life or of athletic training but is more likely to arise from disturbances in the quality and quantity of ingested food. The lack of some minerals in the body appears to be symbolic of the modern era reflecting either the excessive intake of empty calories or a negative energy balance from drastic weight-loss diets. Several animal studies provide convincing evidence for an association between dietary micronutrient availability and microbial composition in the gut. However, the influence of human gut microbiota on the bioaccessibility and bioavailability of trace elements in human food has rarely been studied. Bacteria play a role by effecting mineral bioavailability and bioaccessibility, which are further increased through the fermentation of cereals and the soaking and germination of crops. Moreover, probiotics have a positive effect on iron, calcium, selenium, and zinc in relation to gut microbiome composition and metabolism. The current literature reveals the beneficial effects of bacteria on mineral bioaccessibility and bioavailability in supporting both the human gut microbiome and overall health. This review focuses on interactions between the gut microbiota and several minerals in sport nutrition, as related to a physically active lifestyle.
Key Findings
1
Animal studies show convincing associations between dietary micronutrient availability and gut microbial composition, whereas human evidence remains limited.
2
Gut bacteria influence the bioaccessibility and bioavailability of dietary minerals, with cereal fermentation and crop soaking or germination further enhancing these properties.
3
Mineral deficiencies are more closely associated with poor dietary quality, excessive empty-calorie intake, or drastic weight-loss diets than with physical activity or athletic training.
4
Probiotics positively affect iron, calcium, selenium, and zinc status through interactions with gut microbiome composition and metabolism.
5
The review concludes that beneficial microbe–mineral interactions may support gut microbiome function and overall health, including in sport nutrition.
Research Object
Human gut microbiota and dietary minerals in foods, particularly in the context of sport nutrition
Research Subject
Interactions between gut microbiota and minerals affecting mineral bioaccessibility and bioavailability and their relationship to gut microbiome composition, metabolism, and health
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2021-06-24
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