REFERENCES
1. Théry C, Witwer KW, Aikawa E, et al. Minimal information for studies of extracellular vesicles 2018 (MISEV2018): a position statement of the international society for extracellular vesicles and update of the MISEV2014 guidelines. J Extracell Vesicles 2018;7:1535750.
2. Wiklander OPB, Brennan MÁ, Lötvall J, Breakefield XO, El Andaloussi S. Advances in therapeutic applications of extracellular vesicles. Sci Transl Med 2019:11.
3. Antich-Rosselló M, Forteza-Genestra MA, Monjo M, Ramis JM. Platelet-derived extracellular vesicles for regenerative medicine. Int J Mol Sci 2021;22:8580.
4. Torreggiani E, Perut F, Roncuzzi L, Zini N, Baglìo SR, Baldini N. Exosomes: novel effectors of human platelet lysate activity. Eur Cell Mater 2014;28:137-51; discussion 151.
5. Antich-Rosselló M, Forteza-Genestra MA, Calvo J, Gayà A, Monjo M, Ramis JM. Platelet-derived extracellular vesicles promote osteoinduction of mesenchymal stromal cells. Bone Joint Res 2020;9:667-74.
6. Antich-Rosselló M, Munar-Bestard M, Forteza-Genestra MA, et al. Evaluation of platelet-derived extracellular vesicles in gingival fibroblasts and keratinocytes for periodontal applications. Int J Mol Sci 2022;23:7668.
7. Lovisolo F, Carton F, Gino S, Migliario M, Renò F. Platelet rich plasma-derived microvesicles increased in vitro wound healing. Eur Rev Med Pharmacol Sci 2020;24:9658-64.
8. Miyazawa B, Trivedi A, Togarrati PP, et al. Regulation of endothelial cell permeability by platelet-derived extracellular vesicles. J Trauma Acute Care Surg 2019;86:931-42.
9. Lee JH, Jung H, Song J, Choi ES, You G, Mok H. Activated platelet-derived vesicles for efficient hemostatic activity. Macromol Biosci 2020;20:e1900338.
10. Forteza-Genestra MA, Antich-Rosselló M, Ramis-Munar G, et al. Comparative effect of platelet- and mesenchymal stromal cell-derived extracellular vesicles on human cartilage explants using an ex vivo inflammatory osteoarthritis model. Bone Joint Res 2023;12:667-76.
11. Xu N, Wang L, Guan J, et al. Wound healing effects of a Curcuma zedoaria polysaccharide with platelet-rich plasma exosomes assembled on chitosan/silk hydrogel sponge in a diabetic rat model. Int J Biol Macromol 2018;117:102-7.
12. Sadallah S, Eken C, Martin PJ, Schifferli JA. Microparticles (ectosomes) shed by stored human platelets downregulate macrophages and modify the development of dendritic cells. J Immunol 2011;186:6543-52.
13. Xu Y, Lin Z, He L, et al. Platelet-rich plasma-derived exosomal USP15 promotes cutaneous wound healing via deubiquitinating EIF4A1. Oxid Med Cell Longev 2021;2021:9674809.
14. Guo SC, Tao SC, Yin WJ, Qi X, Yuan T, Zhang CQ. Exosomes derived from platelet-rich plasma promote the re-epithelization of chronic cutaneous wounds via activation of YAP in a diabetic rat model. Theranostics 2017;7:81-96.
15. Amengual-Tugores AM, Ráez-Meseguer C, Forteza-Genestra MA, Monjo M, Ramis JM. Extracellular vesicle-based hydrogels for wound healing applications. Int J Mol Sci 2023;24:4104.
16. Lucien F, Gustafson D, Lenassi M, et al. MIBlood-EV: minimal information to enhance the quality and reproducibility of blood extracellular vesicle research. J Extracell Vesicles 2023;12:e12385.
17. Collins T, Alexander D, Barkatali B. Platelet-rich plasma: a narrative review. EFORT Open Rev 2021;6:225-35.
18. Noulsri E, Palasuwan A. Effects of donor age, donor sex, blood-component processing, and storage on cell-derived microparticle concentrations in routine blood-component preparation. Transfus Apher Sci 2018;57:587-92.
19. Taniguchi Y, Yoshioka T, Sugaya H, et al. Growth factor levels in leukocyte-poor platelet-rich plasma and correlations with donor age, gender, and platelets in the Japanese population. J Exp Orthop 2019;6:4.
20. Agostini F, Polesel J, Battiston M, et al. Standardization of platelet releasate products for clinical applications in cell therapy: a mathematical approach. J Transl Med 2017;15:107.
21. Visnovitz T, Osteikoetxea X, Sódar BW, et al. An improved 96 well plate format lipid quantification assay for standardisation of experiments with extracellular vesicles. J Extracell Vesicles 2019;8:1565263.
22. Suarez-Arnedo A, Torres Figueroa F, Clavijo C, Arbeláez P, Cruz JC, Muñoz-Camargo C. An image J plugin for the high throughput image analysis of in vitro scratch wound healing assays. PLoS One 2020;15:e0232565.
23. Małys MS, Köller MC, Papp K, et al. Small extracellular vesicles are released ex vivo from platelets into serum and from residual blood cells into stored plasma. J Extracellular Bio 2023;2:e88.
24. Marino LS, Nithya TG, Julius A. Lyophilized human platelet lysate as a supplementation in the culture of umbilical cord derived mesenchymal stem cells. Tissue Cell 2023;82:102092.
25. Forteza-Genestra MA, Antich-Rosselló M, Calvo J, Gayà A, Monjo M, Ramis JM. Purity determines the effect of extracellular vesicles derived from mesenchymal stromal cells. Cells 2020;9:422.
26. Osteikoetxea X, Balogh A, Szabó-Taylor K, et al. Improved characterization of EV preparations based on protein to lipid ratio and lipid properties. PLoS One 2015;10:e0121184.
27. Koliha N, Wiencek Y, Heider U, et al. A novel multiplex bead-based platform highlights the diversity of extracellular vesicles. J Extracell Vesicles 2016;5:29975.
28. Loron G, Pansiot J, Olivier P, Charriaut-Marlangue C, Baud O. Inhaled nitric oxide promotes angiogenesis in the rodent developing brain. Int J Mol Sci 2023;24:5871.
29. Kenny FN, Connelly JT. Integrin-mediated adhesion and mechano-sensing in cutaneous wound healing. Cell Tissue Res 2015;360:571-82.
30. Karimi N, Dalirfardouei R, Dias T, Lötvall J, Lässer C. Tetraspanins distinguish separate extracellular vesicle subpopulations in human serum and plasma - contributions of platelet extracellular vesicles in plasma samples. J Extracell Vesicles 2022;11:e12213.
31. Görgens A, Corso G, Hagey DW, et al. Identification of storage conditions stabilizing extracellular vesicles preparations. J Extracell Vesicles 2022;11:e12238.
32. Sonnaert M, Papantoniou I, Luyten FP, Schrooten JI. Quantitative validation of the presto blue metabolic assay for online monitoring of cell proliferation in a 3D perfusion bioreactor system. Tissue Eng Part C Methods 2015;21:519-29.
33. Ye Y, Li SL, Ma YY, et al. Exosomal miR-141-3p regulates osteoblast activity to promote the osteoblastic metastasis of prostate cancer. Oncotarget 2017;8:94834-49.
34. Hu Y, Rao SS, Wang ZX, et al. Exosomes from human umbilical cord blood accelerate cutaneous wound healing through miR-21-3p-mediated promotion of angiogenesis and fibroblast function. Theranostics 2018;8:169-84.
35. Berger DR, Centeno CJ, Steinmetz NJ. Platelet lysates from aged donors promote human tenocyte proliferation and migration in a concentration-dependent manner. Bone Joint Res 2019;8:32-40.
36. Hofmann E, Fink J, Pignet AL, et al. Human in vitro skin models for wound healing and wound healing disorders. Biomedicines 2023;11:1056.