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January 22, 2026International Journal of Molecular Sciences0 citationsOpen Access

Characterization of Large Extracellular Vesicles Released by Apoptotic and Pyroptotic Cells

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DKDelaram KhamariNFNora FeketeRTRirika Tamura

Key Points

  • This research aims to characterize the large extracellular vesicles released during apoptosis and pyroptosis.
  • Induced apoptosis using staurosporine and blocked with Q-VD-OPh.
  • Triggered pyroptosis with LPS/nigericin and inhibited using a selective NLRP3 inhibitor.
  • Analyzed the release and molecular profiles of large EVs derived from THP-1 and U937 cells.
  • Both apoptosis and pyroptosis significantly increased the release of large EVs.
  • Apoptotic EVs exhibited dsDNA and active caspase-3/7; pyroptotic EVs showed distinct protein interactions.
  • EVs from both cell death pathways displayed altered expression of Annexin V binding and CD9.

Abstract

Extracellular vesicles (EVs) are emerging as key factors in maintaining cellular homeostasis, critical mediators of intercellular communication, potential biomarkers, and therapeutic tools. While small EVs have been extensively characterized, the molecular signatures of large EVs (including those generated during regulated cell death pathways) remain poorly defined. Here, we investigated the characteristics of large EVs released during apoptosis and pyroptosis by human monocytic cell lines (THP-1 and U937). Apoptosis was induced by staurosporine and blocked using the pan-caspase inhibitor Q-VD-OPh, whereas pyroptosis was triggered by LPS/nigericin and inhibited with a selective NLRP3 inhibitor. We found that both forms of regulated cell death markedly enhanced the release of large EVs. Both apoptotic and pyroptotic large EVs showed increased Annexin V binding and decreased CD9 expression compared with those released by healthy cells. Large EVs derived from apoptotic and pyroptotic cells exhibited distinct proteomic profiles. Pyroptotic large EVs carried interacting protein networks of RNA-binding proteins and chromatin-associated proteins many of which are known damage-associated molecular patterns or alarmins. In contrast, we found that a subpopulation of apoptotic large EVs was characterized by the presence of dsDNA, and active caspase-3/7. Together, our data shed light on the specific protein cargo of large EVs released by cells during apoptosis and pyroptosis. This study identifies candidate markers of large EVs released by dying cells and may enhance our understanding of the role of EVs in regulated cell death.

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Cite This Study

Khamari et al. (2026) studied this question.

synapsesocial.com/papers/6971bdad642b1836717e24b5https://doi.org/10.3390/ijms27020976
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