Response of Osteoblasts on Amine-Based Nanocoatings Correlates with the Amino Group Density

Author:

Seemann Susanne1,Dubs Manuela2,Koczan Dirk3,Salapare Hernando S.4ORCID,Ponche Arnaud4ORCID,Pieuchot Laurent4ORCID,Petithory Tatiana4,Wartenberg Annika2,Staehlke Susanne1ORCID,Schnabelrauch Matthias2ORCID,Anselme Karine4ORCID,Nebe J. Barbara15ORCID

Affiliation:

1. Institute for Cell Biology, Rostock University Medical Center, 18057 Rostock, Germany

2. Department of Biomaterials, INNOVENT e.V., 07745 Jena, Germany

3. Department of Immunology, Rostock University Medical Center, 18057 Rostock, Germany

4. Institut de Science des Matériaux de Mulhouse (IS2M), CNRS, Université de Haute-Alsace, UMR 7361, 68100 Mulhouse, France

5. Department Life, Light & Matter, Interdisciplinary Faculty, University of Rostock, 18059 Rostock, Germany

Abstract

Increased life expectancy in industrialized countries is causing an increased incidence of osteoporosis and the need for bioactive bone implants. The integration of implants can be improved physically, but mainly by chemical modifications of the material surface. It was recognized that amino-group-containing coatings improved cell attachment and intracellular signaling. The aim of this study was to determine the role of the amino group density in this positive cell behavior by developing controlled amino-rich nanolayers. This work used covalent grafting of polymer-based nanocoatings with different amino group densities. Titanium coated with the positively-charged trimethoxysilylpropyl modified poly(ethyleneimine) (Ti-TMS-PEI), which mostly improved cell area after 30 min, possessed the highest amino group density with an N/C of 32%. Interestingly, changes in adhesion-related genes on Ti-TMS-PEI could be seen after 4 h. The mRNA microarray data showed a premature transition of the MG-63 cells into the beginning differentiation phase after 24 h indicating Ti-TMS-PEI as a supportive factor for osseointegration. This amino-rich nanolayer also induced higher bovine serum albumin protein adsorption and caused the cells to migrate slower on the surface after a more extended period of cell settlement as an indication of a better surface anchorage. In conclusion, the cell spreading on amine-based nanocoatings correlated well with the amino group density (N/C).

Funder

Deutsche Forschungsgemeinschaft

Agence Nationale de la Recherche

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

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