Cell adhesive peptides functionalized on CoCr alloy stimulate endothelialization and prevent thrombogenesis and restenosis
Autor/a
Fecha de publicación
2017ISSN
1549-3296
Resumen
Immobilization of bioactive peptide sequences on CoCr surfaces is an effective route to improve endothelialization, which is of great interest for cardiovascular stents. In this work, we explored the effect of physical and covalent immoblization of RGDS, YIGSR and their equimolar combination peptides on endothelial cells (EC) and smooth muscle cell (SMC) adhesion and on thrombogenicity. We extensively investigated using RT-qPCR, the expression by ECs cultured on functionalised CoCr surfaces of different genes. Genes relevant for adhesion (ICAM-1 and VCAM-1), vascularization (VEGFA, VEGFR-1 and VEGFR-2) and anti-thrombogenicity (tPA and eNOS) were over-expressed in the ECs grown to covalently functionalized CoCr surfaces compared to physisorbed and control surfaces. Pro-thrombogenic genes expression (PAI-1 and vWF) decreased over time. Cell co-cultures of ECs/SMCs found that functionalization increased the amount of adhered ECs onto modified surfaces compared to plain CoCr, independently of the used peptide and the strategy of immobilization. SMCs adhered less compared to ECs in all surfaces. All studied peptides showed a lower platelet cell adhesion compared to TCPS. Covalent functionalization of CoCr surfaces with an equimolar combination of RGDS and YIGSR represented prevailing strategy to enhance the early stages of ECs adhesion and proliferation, while preventing SMCs and platelet adhesion.
Tipo de documento
Artículo
Versión del documento
Versión aceptada
Lengua
Inglés
Materias (CDU)
616.3 - Patología del aparato digestivo. Odontología
Palabras clave
Páginas
11
Publicado por
John Wiley & Sons
Colección
105; 4
Publicado en
Journal of biomedical materials research. Part A
Citación recomendada
Castellanos, Maria Isabel; Guillem Martí, Jordi; Mas Moruno, Carlos [et al.]. Cell adhesive peptides functionalized on CoCr alloy stimulate endothelialization and prevent thrombogenesis and restenosis. Journal of biomedical materials research. Part A, 2017, 105(4), p. 973-983. Disponible en: <https://onlinelibrary.wiley.com/doi/10.1002/jbm.a.35988>. Fecha de acceso: 16 nov. 2021. DOI: 10.1002/jbm.a.35988
Número del acuerdo de la subvención
info:eu-repo/grantAgreement/ES/MINECOMAT2015-14 67183-R
Nota
Authors acknowledge the Spanish Government for financial support through project MAT2015-14 67183-R (MINECO/FEDER), and the Agency for Administration of University and Research
15 Grants of the Government of Catalonia (2014 SGR 1333). M.P. acknowledges the Health 16 Institute Carlos III (ISCIII): Health Technological Development project DTS16/0013317 (MINECO/FEDER). M.I.C. would like to thank the Government of Catalonia for funding 18 through a FI Scholarship. Support for the research of M.P.G. was received through the prize 19 “ICREA Academia” for excellence inresearch, funded by the Generalitat de Catalunya.
Este ítem aparece en la(s) siguiente(s) colección(ones)
- Odontologia [345]
Derechos
© 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 973–983, 2017.

