The athletic gut microbiota

Микробиота кишечника спортсменов
Alex E. Mohr, Ralf Jäger, Katie C Carpenter, Chad M. Kerksick, Martin Purpura, Jeremy R. Townsend, Nicholas P. West, Katherine Black, Michael Gleeson, David B. Pyne, Shawn D. Wells, Shawn M. Arent, Richard B. Kreider, Bill Campbell, Laurent Bannock, Jonathan Scheiman, Craig J. Wissent, Marco Pane, Douglas Kalman, Jamie Pugh, Carmen P. Ortega‐Santos, Jessica A. ter Haar, Paul J. Arciero, José António
2020-01-03

athlete nutritionathletic gut microbiotaexercise-associated microbiotamicrobial diversitysports performance
The microorganisms in the gastrointestinal tract play a significant role in nutrient uptake, vitamin synthesis, energy harvest, inflammatory modulation, and host immune response, collectively contributing to human health. Important factors such as age, birth method, antibiotic use, and diet have been established as formative factors that shape the gut microbiota. Yet, less described is the role that exercise plays, particularly how associated factors and stressors, such as sport/exercise-specific diet, environment, and their interactions, may influence the gut microbiota. In particular, high-level athletes offer remarkable physiology and metabolism (including muscular strength/power, aerobic capacity, energy expenditure, and heat production) compared to sedentary individuals, and provide unique insight in gut microbiota research. In addition, the gut microbiota with its ability to harvest energy, modulate the immune system, and influence gastrointestinal health, likely plays an important role in athlete health, wellbeing, and sports performance. Therefore, understanding the mechanisms in which the gut microbiota could play in the role of influencing athletic performance is of considerable interest to athletes who work to improve their results in competition as well as reduce recovery time during training. Ultimately this research is expected to extend beyond athletics as understanding optimal fitness has applications for overall health and wellness in larger communities. Therefore, the purpose of this narrative review is to summarize current knowledge of the athletic gut microbiota and the factors that shape it. Exercise, associated dietary factors, and the athletic classification promote a more "health-associated" gut microbiota. Such features include a higher abundance of health-promoting bacterial species, increased microbial diversity, functional metabolic capacity, and microbial-associated metabolites, stimulation of bacterial abundance that can modulate mucosal immunity, and improved gastrointestinal barrier function.
1
Athletes show gut microbiota features including greater abundance of health-promoting bacteria, increased microbial diversity, and enhanced functional metabolic capacity.
2
Athletic gut microbiota is shaped by interactions among exercise, diet, environment, and established factors such as age, birth method, and antibiotic exposure.
3
Exercise, exercise-specific dietary factors, and athletic status are associated with a more health-associated gut microbiota.
4
Microbiota-derived metabolites may contribute to athlete health, wellbeing, gastrointestinal function, immune regulation, energy harvest, and sports performance.
5
Understanding the athletic gut microbiota may inform strategies to improve athletic performance and recovery, with potential relevance to broader health and wellness.

Gut microbiota in high-level athletes

The composition, diversity, functional metabolic capacity, and health- and performance-related roles of athletic gut microbiota, including the effects of exercise, diet, environment, and related stressors

Publication Details
Publication Date
2020-01-03
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Authors
Alex E. Mohr
Ralf Jäger
Katie C Carpenter
Chad M. Kerksick
Martin Purpura
Jeremy R. Townsend
Nicholas P. West
Katherine Black
Michael Gleeson
David B. Pyne
Shawn D. Wells
Shawn M. Arent
Richard B. Kreider
Bill Campbell
Laurent Bannock
Jonathan Scheiman
Craig J. Wissent
Marco Pane
Douglas Kalman
Jamie Pugh
Carmen P. Ortega‐Santos
Jessica A. ter Haar
Paul J. Arciero
José António
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