Intestinal fatty acid-binding protein and gut permeability responses to exercise
Реакции кишечного белка, связывающего жирные кислоты, и кишечной проницаемости на физическую нагрузку
2017-03-13
SCID: 54.1/4y5bbpgu
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bovine colostrum supplementationexercise-induced intestinal injuryintestinal fatty acid-binding proteinintestinal permeabilitylactulose/rhamnose ratio
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Abstract (AI)
PURPOSE: Intestinal cell damage due to physiological stressors (e.g. heat, oxidative, hypoperfusion/ischaemic) may contribute to increased intestinal permeability. The aim of this study was to assess changes in plasma intestinal fatty acid-binding protein (I-FABP) in response to exercise (with bovine colostrum supplementation, Col, positive control) and compare this to intestinal barrier integrity/permeability (5 h urinary lactulose/rhamnose ratio, L/R). METHODS: In a double-blind, placebo-controlled, crossover design, 18 males completed two experimental arms (14 days of 20 g/day supplementation with Col or placebo, Plac). For each arm participants performed two baseline (resting) intestinal permeability assessments (L/R) pre-supplementation and one post-exercise following supplementation. Blood samples were collected pre- and post-exercise to determine I-FABP concentration. RESULTS: Two-way repeated measures ANOVA revealed an arm × time interaction for L/R and I-FABP (P < 0.001). Post hoc analyses showed urinary L/R increased post-exercise in Plac (273% of pre, P < 0.001) and Col (148% of pre, P < 0.001) with post-exercise values significantly lower with Col (P < 0.001). Plasma I-FABP increased post-exercise in Plac (191% of pre-exercise, P = 0.002) but not in the Col arm (107%, P = 0.862) with post-exercise values significantly lower with Col (P = 0.013). Correlations between the increase in I-FABP and L/R were evident for visit one (P = 0.044) but not visit two (P = 0.200) although overall plots/patterns do appear similar for each. CONCLUSION: These findings suggest that exercise-induced intestinal cellular damage/injury is partly implicated in changes in permeability but other factors must also contribute.
Key Findings
1
A 14-day bovine colostrum supplementation regimen attenuated exercise-induced increases in intestinal permeability compared with placebo.
2
Exercise increased plasma intestinal fatty acid-binding protein to 191% of baseline with placebo, but not significantly with colostrum supplementation.
3
Exercise-induced intestinal cellular injury appears to partly contribute to increased permeability, while additional mechanisms must also be involved.
4
Post-exercise intestinal permeability and I-FABP concentrations were significantly lower with colostrum than placebo.
5
Urinary lactulose/rhamnose ratio increased to 273% of baseline after exercise with placebo and 148% with colostrum.
Research Object
Exercise-exposed human intestinal barrier and intestinal cells, with and without bovine colostrum supplementation
Research Subject
Exercise-induced intestinal cellular damage and changes in intestinal permeability, assessed by plasma I-FABP and the urinary lactulose/rhamnose ratio
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2017-03-13
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