Ir al menú de navegación principal Ir al contenido principal Ir al pie de página del sitio

Factores de crecimiento derivados de plaquetas : del laboratorio a la aplicación clínica hemato-oncológica.

Platelet-derived growth factors : from laboratory to hemato-oncological clinical application.



Abrir | Descargar

Cómo citar

1.
Lombana M. Factores de crecimiento derivados de plaquetas : del laboratorio a la aplicación clínica hemato-oncológica. Rev. colomb. hematol. oncol. [Internet]. 2016 Jun. 1 [cited 2025 Dec. 5];3(2):8-9. https://doi.org/10.51643/22562915.149

Descargar cita

Citaciones


Sección
Editorial

Cómo citar
1.
Lombana M. Factores de crecimiento derivados de plaquetas : del laboratorio a la aplicación clínica hemato-oncológica. Rev. colomb. hematol. oncol. [Internet]. 2016 Jun. 1 [cited 2025 Dec. 5];3(2):8-9. https://doi.org/10.51643/22562915.149

Dimensions
PlumX
Licencia
Creative Commons License

Esta obra está bajo una licencia internacional Creative Commons Atribución-NoComercial-CompartirIgual 4.0.

Milton Lombana


    Visitas del artículo 137 | Visitas PDF 390


    Descargas

    Los datos de descarga todavía no están disponibles.
    1. Gimbrone MA Jr, Aster RH, Cotran RS, Corkery J, Jandl JH, Folkman J. Preservation of vascular integrity in organs perfused in vitro with a platelet-rich medium. Nature 1969;222(5188):33-6.
    2. Michelson A. Platelets. 3rd ed. Elsevier; 2012.
    3. Smadja DM, Bura A, Szymezak J, Blanchard A, Remones V, Azizi M, et al. Effect of clopidogrel on circulating biomarkers of angiogenesis and endothelial activation. J Cardiol. 2012;59(1):30-5.
    4. Etulain J, Fondevila C, Negrotto S, Schattner M. Platelet-mediated angiogenesis is independent of VEGF and fully inhibited by aspirin. Br J Pharmacol. 2013;170(2):255-65.
    5. Nilsson J, Volk-Jovinge S, Svensson J, Landou C, De Faire U, Hamsten A. Association between high levels of growth factors in plasma and progression of coronary atherosclerosis. J Intern Med. 1992;232(5):397-404.
    6. Currie GA. Platelet-derived growth-factor requirements for in vitro proliferation of normal and malignant mesenchymal cells. Br J Cancer. 1981;43(3):335-43.
    7. Liu C, Zhao W, Meng W, Zhao T, Chen Y, Ahokas RA, et al. Platelet-derived growth factor blockade on cardiac remodeling following infarction. Mol Cell Biochem. 2014;397(1-2):295-304.
    8. Zhao W, Zhao T, Huang V, Chen Y, Ahokas RA, Sun Y. Plateletderived growth factor involvement in myocardial remodeling following infarction. J Mol Cell Cardiol. 2011;51(5):830-8.
    9. Zymek P, Bujak M, Chatila K, Cieslak A, Thakker G, Entman ML, et al. The role of platelet-derived growth factor signaling in healing myocardial infarcts. J Am Coll Cardiol. 2006;48(11):2315-23.
    10. Yu J, Ustach C, Kim HR. Platelet-derived growth factor signaling and human cancer. J Biochem Mol Biol. 2003;36(1):49-59.
    11. Wang Y, Appiah-Kubi K, Wu M, Yao X, Qian H, Wu Y, et al. The platelet-derived growth factors (PDGFs) and their receptors (PDGFRs) are major players in oncogenesis, drug resistance, and attractive oncologic targets in cancer. Growth Factors. 2016;34(1-2):64-71.
    12. Appiah-Kubi K, Wang Y, Qian H, Wu M, Yao X, Wu Y, et al. Platelet-derived growth factor receptor/platelet-derived growth factor (PDGFR/PDGF) system is a prognostic and treatment response biomarker with multifarious therapeutic targets in cancers. Tumour Biol. 2016;37(8):10053-66.
    13. Ehnman M, Östman A. Therapeutic targeting of platelet-derived growth factor receptors in solid tumors. Expert Opin Investig Drugs. 2014;23(2):211-26.
    Sistema OJS 3.4.0.7 - Metabiblioteca |