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The effect of bovine colostrum supplementation on intestinal injury and circulating intestinal bacterial DNA following exercise in the heat

Version 4 2024-03-12, 16:22
Version 3 2023-10-29, 12:45
journal contribution
posted on 2024-03-12, 16:22 authored by Daniel March, Arwel Jones, Rhys Thatcher, Glen Davison
<p>Purpose Exercise-induced changes in intestinal permeability are exacerbated in the heat. The aim of this study was todetermine the effect of 14 days of bovine colostrum (Col) supplementation on intestinal cell damage (plasma intestinal fatty acid-binding protein, I-FABP) and bacterial translocation (plasma bacterial DNA) following exercise in the heat.Methods In a double-blind, placebo-controlled, crossover design, 12 males completed two experimental arms (14 days of 20 g/day supplementation with Col or placebo, Plac) consisting of 60 min treadmill running at 70% maximal aerobic capacity (30 °C, 60% relative humidity). Blood samples were collected pre-exercise (Pre-Ex), post-exercise (Post-Ex) and 1 h post-exercise (1 h Post-Ex) to determine plasma I-FABP concentration, and bacterial DNA (for an abundant gut species, Bacteroides).Results Two-way repeated measures ANOVA revealed an arm × time interaction for I-FABP (P = 0.005, with greater Post-Ex increase in Plac than Col, P = 0.01: Plac 407 ± 194% of Pre-Ex vs Col, 311 ± 134%) and 1 h Post-Ex (P = 0.036: Plac265 ± 80% of Pre-Ex vs Col, 229 ± 56%). There was no interaction (P = 0.904) but there was a main effect of arm (P = 0.046) for plasma Bacteroides/total bacterial DNA, with lower overall levels evident in Col.Conclusion This is the first investigation to demonstrate that Col can be effective at reducing intestinal injury followingexercise in the heat, but exercise responses (temporal pattern) of bacterial DNA were not influenced by Col (although overall levels may be lower).</p>

History

School affiliated with

  • University of Lincoln (Historic Research Outputs)

Publication Title

European Journal of Nutrition

Volume

58

Issue

4

Publisher

Springer

ISSN

1436-6207

eISSN

1436-6215

Date Submitted

2018-04-05

Date Accepted

2018-03-20

Date of First Publication

2018-03-24

Date of Final Publication

2018-06-30

Date Document First Uploaded

2018-03-28

ePrints ID

31460