REFERENCES

1. Mejía-Ochoa M, Acevedo Toro PA, Cardona-Arias JA. Systematization of analytical studies of polycythemia vera, essential thrombocythemia and primary myelofibrosis, and a meta-analysis of the frequency of JAK2, CALR and MPL mutations: 2000-2018. BMC Cancer. 2019;19:590.

2. Baumeister J, Chatain N, Sofias AM, Lammers T, Koschmieder S. Progression of myeloproliferative neoplasms (MPN): diagnostic and therapeutic perspectives. Cells. 2021;10:3551.

3. Raposo G, Stoorvogel W. Extracellular vesicles: exosomes, microvesicles, and friends. J Cell Biol. 2013;200:373-83.

4. Zomer A, Steenbeek SC, Maynard C, van Rheenen J. Studying extracellular vesicle transfer by a Cre-loxP method. Nat Protoc. 2016;11:87-101.

5. Rufino-Ramos D, Leandro K, Perdigão PRL, et al. Extracellular communication between brain cells through functional transfer of Cre mRNA mediated by extracellular vesicles. Mol Ther. 2023;31:2220-39.

6. Boyiadzis M, Whiteside TL. The emerging roles of tumor-derived exosomes in hematological malignancies. Leukemia. 2017;31:1259-68.

7. Catani L, Cavo M, Palandri F. The power of extracellular vesicles in myeloproliferative neoplasms: “crafting” a microenvironment that matters. Cells. 2021;10:2316.

8. Zarà M, Guidetti GF, Camera M, et al. Biology and role of extracellular vesicles (EVs) in the pathogenesis of thrombosis. Int J Mol Sci. 2019;20:2840.

9. Jones CL. Studies on a human megakaryocytic cell line: activation and mitogen release. University of Cincinnati, 1989. Available from https://www.proquest.com/docview/303690970?pq-origsite=gscholar&fromopenview=true&sourcetype=Dissertations%20&%20Theses. [accessed 20 July 2026].

10. Persson KM, Kneller PV, Livingston MW, Bush LM, Deans TL. High-throughput production of platelet-like particles. Methods Mol Biol. 2021;2258:273-83.

11. Zhang X, Borg EGF, Liaci AM, Vos HR, Stoorvogel W. A novel three step protocol to isolate extracellular vesicles from plasma or cell culture medium with both high yield and purity. J Extracell Vesicles. 2020;9:1791450.

12. Cox J, Mann M. MaxQuant enables high peptide identification rates, individualized p.p.b.-range mass accuracies and proteome-wide protein quantification. Nat Biotechnol. 2008;26:1367-72.

13. Shah AD, Goode RJA, Huang C, Powell DR, Schittenhelm RB. LFQ-Analyst: an easy-to-use interactive web platform to analyze and visualize label-free proteomics data preprocessed with MaxQuant. J Proteome Res. 2020;19:204-11.

14. Eustes AS, Dayal S. The role of platelet-derived extracellular vesicles in immune-mediated thrombosis. Int J Mol Sci. 2022;23:7837.

15. Spakova T, Janockova J, Rosocha J. Characterization and therapeutic use of extracellular vesicles derived from platelets. Int J Mol Sci. 2021;22:9701.

16. Trino S, Lamorte D, Caivano A, De Luca L, Sgambato A, Laurenzana I. Clinical relevance of extracellular vesicles in hematological neoplasms: from liquid biopsy to cell biopsy. Leukemia. 2021;35:661-78.

17. Lee SS, Won JH, Lim GJ, et al. A novel population of extracellular vesicles smaller than exosomes promotes cell proliferation. Cell Commun Signal. 2019;17:95.

18. Davies R, Allen S, Mennan C, Platt M, Wright K, Kehoe O. Extracellular vesicle depletion protocols of foetal bovine serum influence umbilical cord mesenchymal stromal cell phenotype, immunomodulation, and particle release. Int J Mol Sci. 2023;24:9242.

19. Sanchez-Manas JM, Perales S, Martinez-Navajas G, et al. Proteomic validation of MEG-01-derived extracellular vesicles as representative models for megakaryocyte- and platelet-derived extracellular vesicles. Biomolecules. 2025;15:1698.

20. Van Deun J, Mestdagh P, Sormunen R, et al. The impact of disparate isolation methods for extracellular vesicles on downstream RNA profiling. J Extracell Vesicles. 2014;3:24858.

21. Garcia-Martin R, Brandao BB, Thomou T, Altindis E, Kahn CR. Tissue differences in the exosomal/small extracellular vesicle proteome and their potential as indicators of altered tissue metabolism. Cell Rep. 2022;38:110277.

22. Kumar MA, Baba SK, Sadida HQ, et al. Extracellular vesicles as tools and targets in therapy for diseases. Signal Transduct Target Ther. 2024;9:27.

23. Luo X, Jean-Toussaint R, Sacan A, Ajit SK. Differential RNA packaging into small extracellular vesicles by neurons and astrocytes. Cell Commun Signal. 2021;19:75.

24. Eguchi A, Fukuda S, Kuratsune H, et al. Identification of actin network proteins, talin-1 and filamin-A, in circulating extracellular vesicles as blood biomarkers for human myalgic encephalomyelitis/chronic fatigue syndrome. Brain Behav Immun. 2020;84:106-14.

25. Holliday LS, Faria LP, Rody WJ Jr. Actin and actin-associated proteins in extracellular vesicles shed by osteoclasts. Int J Mol Sci. 2019;21:158.

26. Butler JT, Abdelhamed S, Kurre P. Extracellular vesicles in the hematopoietic microenvironment. Haematologica. 2018;103:382-94.

27. Huang Z, Zhuang Y, Li W, et al. Apoptotic vesicles are required to repair DNA damage and suppress premature cellular senescence. J Extracell Vesicles. 2024;13:e12428.

28. He F, Laranjeira AB, Kong T, et al. Multiomic profiling reveals metabolic alterations mediating aberrant platelet activity and inflammation in myeloproliferative neoplasms. J Clin Invest. 2024;134:e172256.

Extracellular Vesicles and Circulating Nucleic Acids
ISSN 2767-6641 (Online)
Follow Us

Portico

All published articles are preserved here permanently:

https://www.portico.org/publishers/oae/

Portico

All published articles are preserved here permanently:

https://www.portico.org/publishers/oae/