Literature DB >> 33604558

Tumor necrosis factor-α, TNF receptor, and soluble TNF receptor responses to aerobic exercise in the heat.

Eliott Arroyo1, Joseph A Laudato1, Brandon M Gibson1, Cody S Dulaney1, Jeremiah A Vaughan1, Brittany N Followay1, Ellen L Glickman1, Adam R Jajtner1.   

Abstract

The purpose of this study was to evaluate the effects of aerobic exercise in the heat on circulating concentrations of tumor necrosis factor (TNF)-α, soluble TNF receptors (STNFR1&2), and surface expression of TNFR1&2 on monocyte subpopulations. Twelve recreationally active Caucasian men (24.4 ± 3.4 yrs.; 180.0 ± 6.8 cm; 81.5 ± 8.0 kg; 47.2 ± 4.8 mL·kg-1·min-1) completed an exercise protocol in three environmental conditions: high temperature/low humidity [HTLH; 35 °C, 20% relative humidity (RH)]; high temperature/moderate humidity (HTMH; 35 °C, 45%RH); and moderate temperature/moderate humidity (MTMH; 22 °C, 45%RH). Each protocol consisted of a 60-minute cycling trial at 60% VO2max, a 15-minute rest, and a time-to-exhaustion trial at 90% VO2max (TTE). Blood was sampled before (PRE), immediately after (POST) the 60-minute trial, immediately post-TTE (PTTE), and one-hour post-TTE (REC). Circulating TNF-α and STNFR1&2 were assayed. TNFR1&2 expression on monocyte subsets was measured by flow cytometry on a subset of participants (n = 8). TNF-α area under the curve with respect to increase (AUCi) was greater during HTMH compared to MTMH and HTLH. STNFR1 concentration was greater during HTMH compared to MTMH. With all trials combined, STNFR1 concentration increased from PRE to POST, PTTE, and REC. TNFR1 expression on non-classical monocytes was greater during HTMH compared to HTLH while TNFR2 expression was lower during HTLH compared to both MTMH and HTMH. Data suggest that exercise in the heat increases circulating TNF-α and STNFR1 concentration concomitantly. Furthermore, non-classical monocyte expression of TNFRs are impacted by temperature and humidity during exercise.
© 2020 The Authors.

Entities:  

Keywords:  Aerobic exercise; Heat stress; Monocytes; TNF receptors; Tumor necrosis factor-alpha

Year:  2020        PMID: 33604558      PMCID: PMC7885885          DOI: 10.1016/j.cytox.2020.100033

Source DB:  PubMed          Journal:  Cytokine X        ISSN: 2590-1532


  44 in total

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7.  β-Hydroxy-β-methylbutyrate (HMB)-free acid attenuates circulating TNF-α and TNFR1 expression postresistance exercise.

Authors:  Jeremy R Townsend; Maren S Fragala; Adam R Jajtner; Adam M Gonzalez; Adam J Wells; Gerald T Mangine; Edward H Robinson; William P McCormack; Kyle S Beyer; Gabriel J Pruna; Carleigh H Boone; Tyler M Scanlon; Jonathan D Bohner; Jeffrey R Stout; Jay R Hoffman
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Review 8.  TNF receptor subtype signalling: differences and cellular consequences.

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Authors:  Charles A Dinarello
Journal:  J Endotoxin Res       Date:  2004

Review 10.  Integrated physiological mechanisms of exercise performance, adaptation, and maladaptation to heat stress.

Authors:  Michael N Sawka; Lisa R Leon; Scott J Montain; Larry A Sonna
Journal:  Compr Physiol       Date:  2011-10       Impact factor: 9.090

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