The effect of passive heating on heat shock protein 70 and interleukin-6: A possible treatment tool for metabolic diseases?
Faulkner SH, Jackson S, Fatania G, Leicht CA
Temperature (Austin, Tex.) · 75 citations
How it was studied
- Design
- Controlled clinical trial (classified by our AI screen)
- Studied in
- People
- Main outcome
- Health markers and function
Who paid for it
- Funding
- Independent funding
- University or hospital
- University Hospitals of Leicester NHS Trust
- Government
- National Institute for Health and Care Research
- University or hospital
- Loughborough University
Based on 3 listed funder(s).
Publication
- Published
- 2017-03-09 · Temperature (Austin) · vol. 4 · issue 3 · pp. 292–304
- Publisher
- Taylor & Francis
- Cited
- 91 citations · more than 97% of similar papers · 6.0× the field average
- Impact
- Top 10% most cited in its field
- References
- 64 works
- Access
- Free to read
- Research areas
- Exercise and Physiological Responses · Thermoregulation and physiological responses · Muscle metabolism and nutrition
- Keywords
- Hsp70, Heat shock protein, Animal science, Chemistry, Ex vivo, Endocrinology, Internal medicine, Medicine, Biochemistry, Biology
4 authors
From GB
- Steve H. Faulkner · correspondingLoughborough University
- Shelley N. JacksonLoughborough University
- Ganisha J FataniaLoughborough University
- Christof A. LeichtLoughborough University
Abstract
Increasing physical activity remains the most widely publicized way of improving health and wellbeing. However, in populations that benefit most from exercise (EX), adherence is often poor and alternatives to EX are important to bring about health improvements. Recent work suggests a role for passive heating (PH) and heat shock proteins (HSP) in improving cardio-metabolic health. The aim of this study was to investigate the expression of HSP70 and interleukin-6 in response to either EX or PH and the subsequent effect on glucose control. Fourteen males volunteered and were categorized lean (BMI 23.5 ± 2.2 kg·m-2) or overweight (29.2 ± 2.7 kg·m-2) and completed 60 minutes of either moderate cycling at a fixed rate of metabolic heat production (EX) or warm water immersion in 40°C water (PH). Extracellular HSP70 increased from baseline in both conditions with no differences between PH (0.98 ± 1.1 ng·mL-1) or EX (0.84 ± 1.0 ng·mL-1, p = 0.814). IL-6 increased following both conditions with a two-fold increase after PH and four-fold after EX. Energy expenditure increased by 61.0 ± 14.4 kcal·h-1 (79%) after PH. Peak glucose concentration after a meal immediately following PH was reduced when compared with EX (6.3 ± 1.4 mmol·L-1 versus 6.8 ± 1.2 mmol·L-1; p < 0.05). There was no difference in 24-hour glucose area under the curve (AUC) between conditions. These data indicate the potential for thermal therapy as an alternative treatment and management strategy for those at risk of developing metabolic disease where adherence, or ability to EX, may be compromised.
Abstract via Europe PMC. Copyright remains with the authors or publisher.
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