PS128 Improves Physiological Adaptation and Performance in Triathletes through Gut Microbiota Modulation.

Wen-Ching Huang, Chun-Hsu Pan, Chen-Chan Wei, Hui-Yu Huang

Journal: Nutrients 2021;12(8):2315

PMID: 32752178

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A triathlon is an extremely high-intensity sport. Probiotics have been reported to have health-promoting properties but there are few studies that have looked at how probiotics affect the microbiota of athletes, and how this translates into functional activities. The aim of this parallel-group study is to see how the microbiota of triathletes are altered by L. plantarum PS128 supplementation, not only for exercise performance, but also for possible physiological adaptation. 20 triathletes were assigned to two groups: an L. plantarum 128 supplement group (LG) and a placebo group (PG). Both groups continued with their regular exercise training for the next 4 weeks and supplemented with either the probiotic or a placebo. The endurance performance, body composition, biochemistries, blood cells, microbiota, and associated metabolites were measured. The LG group increased their endurance, by about 130% as compared to the PG group, but there was no significant difference in maximal oxygen consumption (VO2max) and body (bone fat and lean percentage) composition between groups. In conclusion, PS128 supplementation is associated with an improvement on endurance running performance through microbiota modulation and related metabolites, but not in maximal oxygen uptake. However, more efficacy, mechanism, and safety studies with PS128 supplements should be further elucidated on different clinical populations and animal designs in the future.

Abstract

A triathlon is an extremely high-intensity exercise and a challenge for physiological adaptation. A triathlete's microbiome might be modulated by diet, age, medical treatments, lifestyle, and exercise, thereby maintaining aerobiosis and optimum health and performance. Probiotics, prebiotics, and synbiotics have been reported to have health-promoting activities (e.g., immunoregulation and cancer prevention). However, few studies have addressed how probiotics affect the microbiota of athletes and how this translates into functional activities. In our previous study, we found that PS128 could ameliorate inflammation and oxidative stress, with improved exercise performance. Thus, here we investigate how the microbiota of triathletes are altered by PS128 supplementation, not only for exercise performance but also for possible physiological adaptation. The triathletes were assigned to two groups: an 128 supplement group (LG, 3 × 10 colony-forming units (CFU)/day) and a placebo group (PG). Both groups continued with their regular exercise training for the next 4 weeks. The endurance performance, body composition, biochemistries, blood cells, microbiota, and associated metabolites were further investigated. PS128 significantly increased the athletes' endurance, by about 130% as compared to the PG group, but there was no significant difference in maximal oxygen consumption (VOmax) and composition between groups. The PS128 supplementation (LG) modulated the athlete's microbiota with both significant decreases (, , , , , , , and ) and increases (, , , and ), and the LG showed lower diversity when compared to the PG. Also, the short-chain fatty acids (SCFAs; acetate, propionate, and butyrate) of the LG were significantly higher than the PG, which might be a result of a modulation of the associated microbiota. In conclusion, PS128 supplementation was associated with an improvement on endurance running performance through microbiota modulation and related metabolites, but not in maximal oxygen uptake.

Address: Department of Exercise and Health Science, National Taipei University of Nursing and Health Sciences, Taipei 11219, Taiwan.; Ph.D. Program in Biotechnology Research and Development, College of Pharmacy, Taipei Medical University, Taipei 11031, Taiwan.; School of Pharmacy, Taipei Medical University, Taipei 11031, Taiwan.; Department of Aquatic Sport, University of Taipei, Taipei 11153, Taiwan.; Graduate Institute of Metabolism and Obesity Sciences, Taipei Medical University, Taipei 11031, Taiwan.

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