4.7 Article

Platelet-released extracellular vesicles: the effects of thrombin activation

期刊

出版社

SPRINGER BASEL AG
DOI: 10.1007/s00018-022-04222-4

关键词

Atherosclerosis; Extracellular vesicles; Microvesicles; Platelets; Thrombin; Thrombosis

资金

  1. Spanish Ministry of Science and Innovation [PID2019-107160RB-I00, PGC2018-094025-B-I00, MCIN/AEI/10. 13039/501100011033]
  2. Centro de Investigacion Biomedica en Red Cardiovascular [CIBERCV-CB16/11/00411]
  3. Institute of Health Carlos III (ISCIII) [FIS PI19/01687]
  4. Fondo Europeo de Desarrollo Regional (FEDER) Una Manera de Hacer Europa
  5. Generalitat of Catalunya (Secretaria d'Universitats i Recerca, Departament d'Economia i Coneixement) [2017 SGR 1480]
  6. Fundacion Investigacion Cardiovascular Fundacion Jesus Serra
  7. Beatriu de Pinos fellowship from University and Research Grants Management Agency (Government of Catalonia) - COFUND-Marie Sklodowska-Curie Actions in the Horizon 2020 programme [2019BP00211, 801370]

向作者/读者索取更多资源

Platelets play essential roles in thrombosis, inflammation, and angiogenesis. Stimulation by thrombin triggers the release of pEVs from platelets, which are rich in procoagulant and proadhesive proteins. Differential proteomic analysis revealed significant changes in protein composition between pEVs from activated platelets and non-activated platelets.
Platelets exert fundamental roles in thrombosis, inflammation, and angiogenesis, contributing to different pathologies from cardiovascular diseases to cancer. We previously reported that platelets release extracellular vesicles (pEVs) which contribute to thrombus formation. However, pEV composition remains poorly defined. Indeed, pEV quality and type, rather than quantity, may be relevant in intravascular cross-talk with either circulating or vascular cells. We aimed to define the phenotypic characteristics of pEVs released spontaneously and those induced by thrombin activation to better understand their role in disease dissemination. pEVs obtained from washed platelets from healthy donor blood were characterized by flow cytometry. pEVs from thrombin-activated platelets (T-pEVs) showed higher levels of P-selectin and active form of glycoprotein IIb/IIIa than baseline non-activated platelets (B-pEVs). Following mass spectrometry-based differential proteomic analysis, significant changes in the abundance of proteins secreted in T-pEVs compared to B-pEVs were found. These differential proteins were involved in coagulation, adhesion, cytoskeleton, signal transduction, metabolism, and vesicle-mediated transport. Interestingly, release of proteins relevant for cell adhesion, intrinsic pathway coagulation, and platelet activation signalling was significantly modified by thrombin stimulation. A novel pEV-associated protein (protocadherin-alpha 4) was found to be significantly reduced in T-pEVs showing a shift towards increased expression in the membranes of activated platelets. In summary, platelet activation induced by thrombin triggers the shedding of pEVs with a complex proteomic pattern rich in procoagulant and proadhesive proteins. Crosstalk with other vascular and blood cells in a paracrine regulatory mode could extend the prothrombotic signalling as well as promote proteostasic changes in other cellular types.

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