ArticleJournal of extracellular biology2026
Proteomic Atlas of Notochordal Cell-Derived Extracellular Vesicles Highlights EV-Specific NF-κB Modulation and Functional Implications of the Protein Corona.
Article in Journal of extracellular biology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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15 authors.
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Abstract
The notochord is a central signalling hub during embryonic development. After regression of the notochord, notochordal cells (NCs) reside within the developing intervertebral disc. The NC-secretome, including matrix, proteins and extracellular vesicles (NC-EVs), promotes regeneration of degenerate intervertebral discs and cartilage. This study aims to unravel the NC-EV-associated proteome and modulatory role in regenerative processes. NC-EVs were isolated from conditioned medium from porcine NC-rich tissue using differential centrifugation, size exclusion chromatography and density gradient centrifugation. Proteomic analysis of NC-EVs was performed using LC-MS/MS and identified 4042 unique proteins, including EV-associated markers, matrisome proteins and proteins associated with critical nodes in canonical signalling pathways. To test NC-EV bioactivity, functional analysis was performed using SBE, TCF/LEF and NF-κB luciferase reporters. NC-EVs activated SMAD3 and inhibited IL-1β-mediated NF-κB signalling. NC-EV depleted controls showed similar effects, indicating that co-isolated proteins played a major role in modulating signalling. Therefore, NC-EVs were further purified and the GAG-rich biomolecular corona was modified with hyaluronidase. Post-hyaluronidase treatment, SMAD3 activation was enhanced only in methodological controls, while inhibition of IL-1β-mediated NF-κB signalling was NC-EV specific. This study is the first to reveal the NC-EV proteome and illustrates that proteins absorbed on the NC-EVs attribute to EV-mediated functional effects.
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