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Tytuł pozycji:

Comparison of the linking arm effect on the biological performance of a CD31 agonist directly grafted on L605 CoCr alloy by a plasma-based multistep strategy.

Tytuł:
Comparison of the linking arm effect on the biological performance of a CD31 agonist directly grafted on L605 CoCr alloy by a plasma-based multistep strategy.
Autorzy:
Diaz-Rodriguez S; Laboratory for Biomaterials and Bioengineering (CRC-I), Department of Min-Met-Mat Engineering and the CHU de Québec Research Center, Laval University, PLT-1745G, Québec G1V 0A6, Canada.
Loy C; Laboratory for Biomaterials and Bioengineering (CRC-I), Department of Min-Met-Mat Engineering and the CHU de Québec Research Center, Laval University, PLT-1745G, Québec G1V 0A6, Canada.
Chevallier P; Laboratory for Biomaterials and Bioengineering (CRC-I), Department of Min-Met-Mat Engineering and the CHU de Québec Research Center, Laval University, PLT-1745G, Québec G1V 0A6, Canada.
Noël C; Laboratoire Interdisciplinaire de Spectroscopie Electronique, Namur Institute of Structured Matter, University of Namur, 61 Rue de Bruxelles, 5000 Namur, Belgium.
Caligiuri G; Laboratory for Vascular Translational Science, Institut National de la Santé et de la Recherche Médicale U1148, DHU (Département Hospitalo-Universitaire) FIRE (Fibrosis, Inflammation, REmodelling), Faculty of Medicine Paris-Diderot, University Paris Diderot, Sorbonne Paris Cité, F 75018 Paris, France.
Houssiau L; Laboratoire Interdisciplinaire de Spectroscopie Electronique, Namur Institute of Structured Matter, University of Namur, 61 Rue de Bruxelles, 5000 Namur, Belgium.
Mantovani D; Laboratory for Biomaterials and Bioengineering (CRC-I), Department of Min-Met-Mat Engineering and the CHU de Québec Research Center, Laval University, PLT-1745G, Québec G1V 0A6, Canada.
Źródło:
Biointerphases [Biointerphases] 2019 Nov 01; Vol. 14 (5), pp. 051009. Date of Electronic Publication: 2019 Nov 01.
Typ publikacji:
Journal Article; Research Support, Non-U.S. Gov't
Język:
English
Imprint Name(s):
Publication: 2014 : Melville, NY : AIP Publishing
Original Publication: [New York, N.Y.] : AVS, c2006-
MeSH Terms:
Materials Testing*
Platelet Endothelial Cell Adhesion Molecule-1*/agonists
Platelet Endothelial Cell Adhesion Molecule-1*/metabolism
Stents*
Alloys/*chemistry
Coated Materials, Biocompatible/*chemistry
Peptides/*chemistry
Plasma Gases/*chemistry
Cell Adhesion ; Cell Proliferation ; Cell Survival ; Chromium/chemistry ; Cobalt/chemistry ; Human Umbilical Vein Endothelial Cells ; Humans ; Surface Properties
Substance Nomenclature:
0 (Alloys)
0 (Coated Materials, Biocompatible)
0 (PECAM1 protein, human)
0 (Peptides)
0 (Plasma Gases)
0 (Platelet Endothelial Cell Adhesion Molecule-1)
0R0008Q3JB (Chromium)
3G0H8C9362 (Cobalt)
Entry Date(s):
Date Created: 20191103 Date Completed: 20200409 Latest Revision: 20200409
Update Code:
20240104
DOI:
10.1116/1.5120902
PMID:
31675791
Czasopismo naukowe
Stents are cardiovascular implants deployed on atherosclerotic arteries that aid in reopening, sustaining, and avoiding their collapse. Nevertheless, postimplantation complications exist, and the risk of the renewal of the plaque subsists. Therefore, enhanced properties are mandatory requirements for clinics. For that purpose, a novel approach allowing the direct-grafting of bioactive molecules on cobalt-chromium devices (L605) has been developed. This original strategy involves the direct plasma functionalization of metallic surfaces with primary amines (-NH 2 ). These groups act as anchor points to covalently graft biomolecules of interest, herein a peptide derived from CD31 (P23) with proendothelialization and antithrombotic properties. However, the biological activity of the grafted peptide could be impacted by its conformation. For this study, glutaric anhydride (GA), a short chain spacer, and polyethylene glycol (PEG) with antifouling properties were used as linking arms (LAs). The covalent grafting of the CD31 agonist on L605 by different LAs (GA-P23 and PEG-P23) was confirmed by XPS and ToF-SIMS analyses. The biological performance of these functionalized surfaces showed that, compared to the electropolished (EP) alloy, grafting the P23 with both LA increases adhesion and proliferation of endothelial cells (ECs) since day 1: EP = 68 ± 10%, GA-P23 = 101 ± 7%, and PEG-P23 = 106 ± 5% of cell viability. Moreover, ECs formed a complete monolayer at the surface, preventing clot formation (hemoglobin-free >80%). The potential of this plasma-based strategy for cardiovascular applications was confirmed by promoting a fast re-endothelialization, by improving the hemocompatibility of the alloy when coupled with the CD31 agonist and by its transfer onto commercial L605 stents, as confirmed by ToF-SIMS.

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