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Updated: Aug 19, 2025

Techniques to Induce and Quantify Cellular Senescence
Published on: May 1, 2017
Vascular smooth muscle cell senescence accelerates medin aggregation via small extracellular vesicle secretion and
Meredith Whitehead1, Syabira Yusoff1, Sadia Ahmad1
1School of Cardiovascular and Metabolic Medicine & Sciences, King's College London, London, UK.
Abstract:
Vascular amyloidosis, caused when peptide monomers aggregate into insoluble amyloid, is a prevalent age-associated pathology. Aortic medial amyloid (AMA) is the most common human amyloid and is composed of medin, a 50-amino acid peptide. Emerging evidence has implicated extracellular vesicles (EVs) as mediators of pathological amyloid accumulation in the extracellular matrix (ECM). To determine the mechanisms of AMA formation with age, we explored the impact of vascular smooth muscle cell (VSMC) senescence, EV secretion, and ECM remodeling on medin accumulation. Medin was detected in EVs secreted from primary VSMCs. Small, round medin aggregates colocalized with EV markers in decellularized ECM in vitro and medin was shown on the surface of EVs deposited in the ECM. Decreasing EV secretion with an inhibitor attenuated aggregation and deposition of medin in the ECM. Medin accumulation in the aortic wall of human subjects was strongly correlated with age and VSMC senescence increased EV secretion, increased EV medin loading and triggered deposition of fibril-like medin. Proteomic analysis showed VSMC senescence induced changes in EV cargo and ECM composition, which led to enhanced EV-ECM binding and accelerated medin aggregation. Abundance of the proteoglycan, HSPG2, was increased in the senescent ECM and colocalized with EVs and medin. Isolated EVs selectively bound to HSPG2 in the ECM and its knock-down decreased formation of fibril-like medin structures. These data identify VSMC-derived EVs and HSPG2 in the ECM as key mediators of medin accumulation, contributing to age-associated AMA development.
Insights
Vascular smooth muscle cell senescence drives aortic medial amyloid (AMA) by increasing extracellular vesicle (EV) secretion and medin deposition. EVs and HSPG2 in the extracellular matrix are key to age-associated AMA development.
Area of Science:
- Cardiovascular Biology
- Aging Research
- Extracellular Matrix Biology
Background:
- Vascular amyloidosis, particularly aortic medial amyloid (AMA) from medin peptide aggregation, is common in aging.
- Extracellular vesicles (EVs) are increasingly recognized as mediators of amyloid accumulation in the extracellular matrix (ECM).
Purpose of the Study:
- To investigate the mechanisms linking vascular smooth muscle cell (VSMC) senescence, EV secretion, and ECM remodeling to age-associated medin accumulation in AMA.
Main Methods:
- Detection of medin in VSMC-derived EVs and its localization in ECM.
- Inhibition of EV secretion and assessment of medin aggregation/deposition.
- Analysis of human aortic walls, VSMC senescence, EV cargo, and ECM composition.
- Investigation of EV-HSPG2 binding and its role in medin aggregation.
Main Results:
- Medin was found in EVs secreted by VSMCs and deposited in the ECM.
- Reduced EV secretion attenuated medin aggregation and ECM deposition.
- VSMC senescence correlated with increased medin accumulation in human aortas, enhanced EV secretion, and altered EV-ECM interactions.
- Increased HSPG2 in senescent ECM facilitated EV binding and medin aggregation.
Conclusions:
- VSMC-derived EVs and ECM-bound HSPG2 are critical mediators of age-associated medin accumulation.
- VSMC senescence accelerates AMA development through enhanced EV secretion and altered EV-ECM interactions.
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