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May 27, 2026Cells0 citationsOpen Access

The Role of Extracellular Vesicles in Vein Graft Disease

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GLGeorgia R. LaytonRSRiyaz SomaniGMGiovanni Mariscalco

Key Result

Extracellular vesicles modulate core processes in vein graft remodeling, but no published clinical studies currently evaluate EV-based biomarkers specifically for saphenous vein graft patency.

Key Points

  • The aim is to investigate how extracellular vesicles (EVs) influence vein graft disease and identify their potential as biomarkers for graft failure.
  • Review of current evidence on EV contributions from endothelial cells, vascular smooth muscle cells, platelets, and macrophages.
  • Assessment of EV-associated microRNAs with relevance to graft failure pathways.
  • Evaluation of therapeutic strategies like antiplatelet therapy and KCa3.1 inhibition.
  • No clinical studies have assessed EV-based biomarkers for saphenous vein graft patency.
  • A need for prospective studies linking EV phenotypes to graft outcomes was identified.
  • Current understanding of EV signaling and its modulation can guide future therapies.

Structured PICO

P
Population
Patients undergoing coronary artery bypass grafting (CABG) using autologous saphenous vein (SV)
I
Intervention
Extracellular vesicles (EVs) and EV-modulating therapeutic strategies

Extracellular vesicles play a key role in vein graft remodeling after CABG, but prospective clinical studies are needed to evaluate their potential as biomarkers for graft patency.

Limitations

  • No published clinical studies evaluate EV-based biomarkers specifically for saphenous vein graft patency
  • No studies prospectively predict saphenous graft failure
  • None prospectively predict saphenous graft failure

Abstract

Coronary artery bypass grafting (CABG) using the autologous saphenous vein (SV) remains widely performed for obstructive atherosclerosis; however, vein graft disease drives recurrent ischaemia through early thrombosis and progressive intimal hyperplasia, and accelerated atherosclerosis developing within the grafts. Extracellular vesicles (EVs) are membrane-bound particles that transfer proteins, lipids, and microRNAs between cells. They modulate endothelial dysfunction, vascular smooth muscle cell phenotypic switching, inflammation, and coagulation, which are core processes in vein graft remodelling. Arterialisation exposes the vein to abrupt rises in shear stress, cyclic stretch, and intraluminal pressure. These forces increase EV release and reshape EV cargo in experimental systems, suggesting a potential mechanism for amplifying early graft injury which warrants direct investigation in vein tissue. This review synthesises current evidence for cell-specific EV contributions from ECs, vascular smooth muscle cells, platelets, and macrophages, and appraises EV-associated microRNAs with biomarker potential relevant to graft failure pathways. We also review therapeutic strategies that may modulate EV signalling including antiplatelet therapy, statins, KCa3.1 inhibition, and pro-reparative mesenchymal stromal cell-derived EVs. No published clinical studies evaluate EV-based biomarkers specifically for saphenous vein graft patency, and none prospectively predict saphenous graft failure. CABG provides a well-defined time zero event that enables longitudinal sampling and risk stratification. Prospective studies linking EV phenotypes and miRNA signatures to imaging-defined graft outcomes are needed to support clinical translation.

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Cite This Study

Layton et al. (2026) conducted a review in Vein graft disease. Extracellular vesicles (EVs) was evaluated. Extracellular vesicles modulate core processes in vein graft remodeling, but no published clinical studies currently evaluate EV-based biomarkers specifically for saphenous vein graft patency.

synapsesocial.com/papers/6a168b280c924ddd1bd5a074https://doi.org/10.3390/cells15100916
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