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The effect of dietary (poly)phenols on exercise-induced physiological adaptations: A systematic review and meta-analysis of human intervention trials

Critical Reviews in Food Science and Nutrition
Q1
Dec 2020
Citations: 15
Influential: 1
Systematic Reviews / Meta-Analyses
79
COI

What this study found

(Poly)phenols showed no effect on muscle strength, peak power output, or VO2max but enhanced exercise capacity. Isoflavones may increase lean mass while resveratrol might impair training adaptations.

Study & population
Included 22 studies with adult participants, administering (poly)phenol supplements alongside at least 2 weeks of supervised exercise.
Intervention
Systematic review and meta-analysis examining the effects of (poly)phenol supplementation combined with exercise training in adult humans.
Key limitation
Small sample sizes and lack of homogeneity across studies limited the ability to draw definitive conclusions.
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Original abstract

Abstract We performed a systematic review and meta-analysis to determine whether (poly)phenol supplementation augments the physiological adaptations to exercise training. Eligible studies administered a (poly)phenol supplement alongside ≥2 weeks of supervised exercise in adult humans. After screening, 22 studies were included in the analysis. Isoflavones and green tea (poly)phenols were administered most frequently. Quality assessments suggested most studies were free from bias. (Poly)phenols had no effect on training-induced adaptations in muscle strength, peak power output, and O2max, but enhanced exercise capacity (SMD: 0.67, 95% CI: 0.25 to 1.09, p < 0.01). (Poly)phenols had no overall effect on fat loss (SMD: 0.10, 95% CI: −0.10 to 0.29; p = 0.97) or lean mass gains (SMD: 0.06, 95% CI: −0.18 to 0.30, p = 0.62) but sub-analysis suggested that isoflavones increased lean mass (SMD: 0.25, 95 CI%: −0.00 to 0.50, p = 0.05). Resveratrol impaired adaptations in two studies, although this was a non-statistically significant finding (SMD: −0.54, 95% CI: −1.15 to 0.07, p = 0.08). Our results suggest that isoflavones may augment aspects of the adaptive response to exercise training, while resveratrol may compromise training adaptations. More high-quality research is needed to resolve the effects of (poly)phenols on exercise training adaptations.

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