Composites Based on Poly(ε-caprolactone) and Graphene Oxide Modified with Oligo/Poly(Glutamic Acid) as Biomaterials with Osteoconductive Properties

Author:

Solomakha Olga1,Stepanova Mariia1ORCID,Gofman Iosif1ORCID,Nashchekina Yulia2,Rabchinskii Maxim3ORCID,Nashchekin Alexey3ORCID,Lavrentieva Antonina4ORCID,Korzhikova-Vlakh Evgenia1ORCID

Affiliation:

1. Institute of Macromolecular Compounds, Russian Academy of Sciences, St. Petersburg 199004, Russia

2. Institute of Cytology, Russian Academy of Sciences, St. Petersburg 194064, Russia

3. Ioffe Institute, Politekhnicheskaya St. 26, St. Petersburg 194021, Russia

4. Institute of Technical Chemistry, Leibniz University of Hannover, 30167 Hannover, Germany

Abstract

The development of new biodegradable biomaterials with osteoconductive properties for bone tissue regeneration is one of the urgent tasks of modern medicine. In this study, we proposed the pathway for graphene oxide (GO) modification with oligo/poly(glutamic acid) (oligo/poly(Glu)) possessing osteoconductive properties. The modification was confirmed by a number of methods such as Fourier-transform infrared spectroscopy, quantitative amino acid HPLC analysis, thermogravimetric analysis, scanning electron microscopy, and dynamic and electrophoretic light scattering. Modified GO was used as a filler for poly(ε-caprolactone) (PCL) in the fabrication of composite films. The mechanical properties of the biocomposites were compared with those obtained for the PCL/GO composites. An 18–27% increase in elastic modulus was found for all composites containing modified GO. No significant cytotoxicity of the GO and its derivatives in human osteosarcoma cells (MG-63) was revealed. Moreover, the developed composites stimulated the proliferation of human mesenchymal stem cells (hMSCs) adhered to the surface of the films in comparison with unfilled PCL material. The osteoconductive properties of the PCL-based composites filled with GO modified with oligo/poly(Glu) were confirmed via alkaline phosphatase assay as well as calcein and alizarin red S staining after osteogenic differentiation of hMSC in vitro.

Funder

Ministry of Science and Higher Education of the Russian Federation as part of the State Assignment of IMC RAS

Ministry of Science and Higher Education of the Russian Federation

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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