4.4 Article

Dietary curcumin supplementation does not alter peripheral blood mononuclear cell responses to exertional heat stress

期刊

EUROPEAN JOURNAL OF APPLIED PHYSIOLOGY
卷 118, 期 12, 页码 2707-2717

出版社

SPRINGER
DOI: 10.1007/s00421-018-3998-5

关键词

Exercise; Hyperthermia; Dietary supplement; Immune; Inflammation; Open window

资金

  1. Department of Exercise Science within the Congdon School of Health Sciences

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IntroductionCurcumin reduces gut barrier damage and plasma cytokine responses to exertional heat stress. However, the role of peripheral blood mononuclear cell (PBMC) in this response remains unclear.PurposeThis work investigated the effect of 3days of 500mg/day dietary curcumin supplementation on PBMC responses to exertional heat stress in non-heat acclimated humans.MethodsEight participants ran (65% VO2max) for 60min in an environmental chamber (37 degrees C/25% RH) two times (curcumin/placebo). Blood samples were collected pre, post, 1h post, and 4h post-exercise. PBMC were isolated from blood samples and the protein content of markers along the TLR4 signaling pathway (TLR4, MyD88, pNF-B, NF-B), indicators of cellular energy status (SIRT1 and p-AMPK), and mediators of cellular heat shock response (pHSF-1 and HSP70) were examined with Western blot. Data were analyzed with two-way (conditionxtime) RM-ANOVAs with Newman-Keuls post hocs.ResultsAs compared to placebo, curcumin did not alter protein expression in PBMC (p>0.05). However, in both study conditions at 1h post-reductions were noted in TLR 4 (-21.5%; p=0.03), HSP70 (-11.0%; p=0.04), pAMPK (-48.5%; p<0.01), and SIRT1 (-47.8%; p<0.01). Remarkably, the ratio of pNF-B to NF-B was elevated in both conditions at this same timepoint (+75.4%; p=0.02).ConclusionsInflammatory protein expression in PBMC did not differ between curcumin and placebo conditions. Downregulation of pAMPK/SIRT1 and release of HSP70 to the bloodstream may compensate for reduced TLR4, allowing PBMC to maintain inflammatory capacity and preventing an open window during the hours following hyperthermic exercise.

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