Exercise
BehavioralSupervised treadmill exercise at 85% VO2max, 3x/wk for 16 weeks. Exercise duration will be adjusted based on individual VO2-heart rate (HR) relationship so that ~400 kcals will be expended during each training session.
NCT Number: NCT06546085
Extracellular vesicles (EVs) play a role in obesity-induced insulin resistance and likely impact the development of cardiovascular disease. However, little is known on how EVs affect vascular insulin action in people. The purpose of this study is to understand how EVs play a role in type 2 diabetes related cardiovascular disease. This research will also study if exercise can change how EVs impact blood flow and metabolic health. This study will contribute to designing precision medicine to treat/prevent cardiovascular disease in type 2 diabetes.
Interested in participating?
Request Info30 year–80 year
All sexes
Interventional
Not applicable
Institute for Food, Nutrition, and Health, New Brunswick, New Jersey, United States
Insulin resistance is a key underlying factor promoting hyperglycemia and hypertension in people with type 2 diabetes (T2D), who have a 3-fold greater cardiovascular disease (CVD) risk when compared with healthy controls. Despite several therapeutic approaches that favor insulin sensitivity through a variety of purported mechanisms (e.g. weight loss, incretins, AMPK activation, reduction in bioactive lipids: DAG/ceramides, etc.), long-term progression of glucose deterioration occurs. This suggests adjunctive targets may be important to prevent/reverse T2D. Studies show that extracellular vesicles (EVs) obtained from plasma are involved in obesity-induced insulin resistance at levels of adipocytes, muscle, and liver. However, little is known how plasma EVs affect vascular insulin action in humans. This is of clinical relevance as EVs enhance the Framingham Risk Score, suggesting EVs are a unique factor promoting CVD. This proposal will fill this knowledge gap by conducting a translational study in 3 distinct groups of people separated by obesity and T2D. The investigators hypothesize that 1) insulin will promote EV uptake and modify insulin signaling in endothelial cells, 2) EVs from adults with T2D will impair vessel reactivity compared to controls; 3) insulin will alter circulating EV insulin signaling and cargo, and 4) exercise training will change EV uptake and cargo as well as EV mediated vascular reactivity to insulin as well as relate to improved vascular function in humans.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Supervised treadmill exercise at 85% VO2max, 3x/wk for 16 weeks. Exercise duration will be adjusted based on individual VO2-heart rate (HR) relationship so that ~400 kcals will be expended during each training session.
Time frame: From enrollment to the end of treatment at 16 weeks.
Extracellular vesicles (CD41 -CD31+, CD45, Tx, CD31, CD105) will be isolated from plasma before and during insulin stimulation.
Time frame: From enrollment to the end of treatment at 16 weeks.
Measure of glucose metabolism determined by the glucose infusion during the last 30 minutes of the 150 clamp procedure.
Time frame: From enrollment to the end of treatment at 16 weeks.
Measure of microvascular blood flow before and during insulin stimulation.
Time frame: From enrollment to the end of treatment at 16 weeks.
Measure of blood flow using ultrasound before and during insulin stimulation.
Time frame: From enrollment to the end of treatment at 16 weeks.
Measure of arterial stiffness using pulse waves at the carotid and femoral arteries before and during insulin stimulation.
Time frame: From enrollment to the end of treatment at 16 weeks.
Measure of aortic pressure waveforms before and during insulin stimulation.
Time frame: From enrollment to the end of treatment at 16 weeks.
Measure of blood flow using ultrasound before and during insulin stimulation.
Contact information is provided by the study sponsor or research team.
Emily M Heiston, PhD
CONTACT
Steven K Malin, PhD
CONTACT
Rutgers, The State University of New Jersey
Other
Extracellular Vesicles, Insulin Action, and Exercise on Vascular Function in Type 2 Diabetes
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