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Study identifier: NCT04087655 Synced from ClinicalTrials.gov · July 28, 2026
● Recruiting

Microvascular Dysfunction in Obesity

Condition: Obesity · Endothelial Dysfunction  ·  Sponsor: Florida State University

PhaseNA
Planned participants25
Who can joinAll sexes, 18 Years to 45 Years
Healthy volunteersYes

About this study

Impaired endothelial function is observed in disease states related to obesity, such as atherosclerosis, coronary artery disease, and diabetes. Reactive oxygen species (ROS) production and resultant oxidative stress contribute to the development of these obesity-related diseases. The enzyme NADPH-oxidase is a major source of oxidative stress within the vasculature, and has been linked with the Metabolic Syndrome. In the investigator's previously funded studies, the investigators demonstrated for the first time that: 1) in vivo ROS were elevated in skeletal muscle of obese as compared to lean or overweight human subjects, 2) perfusion of the NADPH-oxidase inhibitor apocynin locally into muscle normalized ROS levels and reversed local microvascular endothelial dysfunction in the obese individuals, and 3) aerobic exercise training was effective at attenuating in vivo hydrogen peroxide production and reversing microvascular endothelial dysfunction in the obese individuals. The investigators will investigate in this R15 renewal application the mechanism of exercise training-induced alterations in ROS production and action on endothelial dysfunction in obesity using our newly developed microdialysis methodology of monitoring ROS production, in combination with analysis of muscle biopsy samples obtained before and after our previously tested 8-week intervention of aerobic interval exercise training. The objectives of this study are to determine the impact of in vivo NADPH oxidase ac…

This description comes directly from the study's public registry record.

Talk to the study team

Robert C Hickner, PhD  ·  850-644-1375  ·  rhickner@fsu.edu

Always discuss trial participation with your own doctor first.

Locations (1)

Florida State UniversityTallahassee, Florida, United StatesRecruiting

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Source record: clinicaltrials.gov/study/NCT04087655