Exercise training / Obesity / Cardiovascular Diseases · Interventional Study
ClinicalTrials.gov · August 17, 2026
Early or partial results. Treat as a signal, not a conclusion.
This is a recruiting interventional study that has not yet reported results. It is designed to test the hypothesis that adiposomes (extracellular vesicles from adipose tissue) mediate endothelial dysfunction in obese diabetic patients, and whether exercise training reverses this effect. The study is supported by preliminary in vitro findings but no human outcome data are available.
Interventional, Randomized, Parallel, Open label, Prevention purpose. Obesity, Diabetes, Cardiovascular Diseases; age from 18 Years; to 50 Years. Intervention: Exercise training. Compared with: Control (standards of care) — No Intervention. n = 60. 1 site: United States.
This is a recruiting interventional study that has not yet reported results. It is designed to test the hypothesis that adiposomes (extracellular vesicles from adipose tissue) mediate endothelial dysfunction in obese diabetic patients, and whether exercise training reverses this effect. The study is supported by preliminary in vitro findings but no human outcome data are available.
This registry record contains no results; no efficacy or safety data are reported.
The source did not state who this applies to in practice.
This is a recruiting interventional study with no results reported; it registers a mechanistic hypothesis about adiposomes in endothelial dysfunction, supported only by preliminary findings in cells, to be tested in 60 obese diabetic subjects over 4 years.
As stated by the source record.
Quoted from the source exactly as published.
Graded across the dimensions that decide whether you should act, each from what the source actually supports. There is no single score, and where a dimension was not assessed it says so.
What is missing. This record has no key findings. That is a gap in the analysis, not a judgement about the study.
Registry record from ClinicalTrials.gov (NCT05199454). This is a study registration, not published results. Lead sponsor: University of Illinois at Chicago. Recruitment status: RECRUITING. Phase: NA. Study type: INTERVENTIONAL. Enrollment: 60 participants (ESTIMATED). Conditions: Obesity, Diabetes, Cardiovascular Diseases. Interventions: OTHER: Exercise training. Primary outcome measures: Brachial artery flow-mediated dilation (percent vasodilation) in 60 obese diabetic subjects , 4 years. Brief summary: The development of type II diabetes (T2D) is strongly associated with obesity and both are well-established risk factors for cardiovascular disease. Knowing that vascular dysfunction is an early event in the development of cardiovascular disease in obese diabetic (OB-T2D) patients, The investigators set their long-term goal to define molecular mechanisms of vascular dysfunction and corrective strategies that target these mechanisms such as physical activity and weight loss. The investigators recently discovered that human adipose tissues release extracellular vesicles (adiposomes) that are efficiently captured by endothelial cells. Adiposomes are known to carry bioactive cargos such as proteins and micro RNAs; however, their lipid content has not been studied nor has their ability to transfer their lipid cargo to endothelial cells. In the current application, the investigators propose to investigate the role of adiposomes in communicating the unhealthy milieu, mainly dysregulated lipids, to endothelial cells in OB-T2D subjects. On top of these lipid species that the investigators propose to be carried by adiposomes are glycosphingolipids (GSLs). These lipids originate from the glycosylation of ceramides, a chemical process that is upregulated in the presence of inflammation and high glucose levels. Preliminary findings showed that in endothelial cells, GSL-rich adiposomes disturb plasma membrane structure and subsequently induce endothelial dysfunction. Moreover, the investigators found that preconditioning endothelial cells with high shear stress (which is an exercise mimetic) protected endothelial cells from the detrimental effects induced by adiposomes. Therefore, the central hypothesis is that adipose tissues in OB-T2D patients release GSL-loaded adiposomes that induce vascular endothelial dysfunction. The researchers propose that exercise and weight loss interventions (bariatric surgery) will restore adipose tissue homeostasis, reduce GSL-loaded adiposomes, and subsequently alleviate vascular risk in OB-T2D patients. The investigators will test the hypotheses by pursuing the following aims: aim 1: Investigate the role of GSL-rich adiposomes in the pathogenesis of endothelial dysfunction in OB-T2D adults; aim 2: Test the effectiveness of exercise training in reducing adiposome-mediated effects on vascular function; and aim 3: Examine changes in adiposome/caveolae axis following metabolic surgery and their association with vascular function.
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