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Heat Exposure clinical trials

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NCT ID: NCT06159374 Recruiting - Hypoxia, Altitude Clinical Trials

Effects of Physical Training in Altered Environmental Conditions on Exercise Performance

Start date: January 1, 2022
Phase: N/A
Study type: Interventional

The main objective of the study is to evaluate the physiological-biochemical effects of physical training under artificially altered climatic conditions (using a hypoxic thermoclimatic chamber) in particular to determine the effect of such training on exercise capacity and physiological response, including the effect of training in high-performance athletes. The study will evaluate the effects of physical training and the simultaneous application of hypoxia and heat/cold on aerobic and anaerobic capacity and the physiological response of the human body. The aim of the study is to find the most favourable environmental conditions for physical training in order to maximise physical performance.

NCT ID: NCT05269589 Recruiting - Clinical trials for Diabetes Mellitus, Type 2

Home-based Heat Therapy for Type 2 Diabetes

Start date: February 18, 2022
Phase: N/A
Study type: Interventional

Insulin resistance and hyperglycemia predispose individuals with type 2 diabetes mellitus (T2DM) to endothelial dysfunction and a greater risk of cardiovascular diseases (CVD). Increased CVD risk in individuals with T2DM persists despite optimal pharmacological therapy, highlighting the need to identify complementary lifestyle interventions that improve cardiometabolic functions in this population. Evidence from animal models suggests that heat exposure improves metabolic functions. Notably, weekly heat exposure for 16 weeks blunts hyperinsulinemia and hyperglycemia induced by a high fat diet in mice. In parallel, studies in humans have shown that heat exposure improves vascular endothelial function. Based on such findings, it has been suggested that heat therapy may represent an effective lifestyle intervention to improve cardiometabolic functions. However, only 1 study has examined the impact of a heat therapy intervention on individuals with T2DM, demonstrating that 6 weeks of heat exposure reduces fasting plasma glucose and hemoglobin A1C. No study has considered potential vascular benefits of heat therapy in individuals with T2DM. This project will investigate cardiometabolic responses to repeated heat exposure in men and women with T2DM. We will test the hypothesis that 12 weeks of heat therapy improves postprandial fatty acid handling, insulin sensitivity and endothelial function in individuals with T2DM.