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Functionalization of CoCr surfaces with cell adhesive peptides to promote HUVECs adhesion and proliferation

  • Maria Isabel Castellanos
  • , Carlos Mas-Moruno
  • , Anna Grau
  • , Xavier Serra-Picamal
  • , Xavier Trepat
  • , Fernando Albericio
  • , Michael Joner
  • , Francisco Javier Gil
  • , Maria Pau Ginebra
  • , Jose María Manero
  • , Marta Pegueroles
  • UPC BarcelonaTech
  • Institut de Bioenginyeria de Catalunya (IBEC)
  • Universitat de Barcelona
  • Technology Department
  • CVPath Institute, Inc.

Research output: Contribution to journalArticlepeer-review

48 Scopus citations

Abstract

Biomimetic surface modification with peptides that have specific cell-binding moieties is a promising approach to improve endothelialization of metal-based stents. In this study, we functionalized CoCr surfaces with RGDS, REDV, YIGSR peptides and their combinations to promote endothelial cells (ECs) adhesion and proliferation. An extensive characterization of the functionalized surfaces was performed by XPS analysis, surface charge and quartz crystal microbalance with dissipation monitoring (QCM-D), which demonstrated the successful immobilization of the peptides to the surface. Cell studies demonstrated that the covalent functionalization of CoCr surfaces with an equimolar combination of RGDS and YIGSR represents the most powerful strategy to enhance the early stages of ECs adhesion and proliferation, indicating a positive synergistic effect between the two peptide motifs. Although these peptide sequences slightly increased smooth muscle cells (SMCs) adhesion, these values were ten times lower than those observed for ECs. The combination of RGDS with the REDV sequence did not show synergistic effects in promoting the adhesion or proliferation of ECs. The strategy presented in this study holds great potential to overcome clinical limitations of current metal stents by enhancing their capacity to support surface endothelialization.

Original languageEnglish
Pages (from-to)82-92
Number of pages11
JournalApplied Surface Science
Volume393
DOIs
StatePublished - 30 Jan 2017

Keywords

  • Cell adhesive peptides
  • CoCr alloy
  • Endothelialization
  • HUVEC proliferation
  • SMCs adhesion
  • Surface functionalization

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