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April 1, 2026International Journal of Molecular Sciences3 citationsOpen Access

Extracellular Vesicles in Obesity: From Pathophysiological Mediators to Therapeutic Tools

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NPNikola PavlovićPTPetar TodorovićMMMirko Maglica

Key Points

  • To explore the role of extracellular vesicles (EVs) in obesity and their potential as diagnostic and therapeutic tools.
  • Review of literature on EVs in obesity
  • Analysis of EV cargo including miRNAs and lipids
  • Evaluation of therapeutic effects of stem cell-derived EVs in preclinical models
  • Assessment of EV biomarkers for disease severity and cardiovascular risk
  • EVs are implicated in chronic inflammation and metabolic dysfunction in obesity.
  • Specific miRNAs and cargo in EVs correlate with disease severity.
  • Preclinical models show potential for EVs to reverse insulin resistance and improve metabolic outcomes.

Abstract

Obesity is increasingly recognized as a disease of dysregulated intercellular communication rather than merely an energy imbalance. Extracellular vesicles (EVs), membrane-bound nanoparticles (30–1000 nm) released by nearly all cell types, act as central mediators of this pathological crosstalk. In obesity, hypertrophic adipocytes, pro-inflammatory macrophages, and dysfunctional endothelial cells secrete EVs carrying altered cargo, including pro-inflammatory miRNAs (e.g., miR-34a, miR-155), bioactive lipids, and stress proteins, which propagate systemic metabolic dysfunction. Adipose tissue-derived EVs impair hepatic fatty acid oxidation, promote steatohepatitis, suppress pancreatic beta-cell insulin secretion, induce skeletal muscle insulin resistance via PPARγ repression, and contribute to endothelial dysfunction and atherosclerosis. EV-mediated adipocyte–macrophage crosstalk reinforces chronic adipose inflammation. Circulating EVs also provide biomarkers: subpopulation ratios, miRNA signatures, and tissue factor-positive EVs reflect disease severity, predict cardiovascular risk, and monitor therapeutic responses, with machine learning enhancing diagnostic precision. Therapeutically, EVs from mesenchymal stem cells, Wharton’s jelly MSCs, adipose progenitors, and M2 macrophages reverse insulin resistance, hepatic steatosis, and adipose inflammation in preclinical models. Engineering strategies improve EV potency and tissue targeting, and Phase I trials confirm safety, though manufacturing and cost remain barriers. Preclinical and early clinical studies of MSC-EVs confirm a favorable safety profile, though manufacturing scalability and cost remain barriers to widespread clinical adoption. Overall, EVs represent both diagnostic tools and therapeutic vehicles in precision obesity medicine, offering a pathway from symptom management toward true disease remission.

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Cite This Study

Pavlović et al. (2026) studied this question. Extracellular vesicles drive obesity-related metabolic dysfunction, while stem cell-derived vesicles reverse insulin resistance in preclinical models and show safety in Phase I trials.

synapsesocial.com/papers/69ccb6e416edfba7beb889b9https://doi.org/10.3390/ijms27073137
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