Biological and Physicochemical Analysis of Sr-Doped Hydroxyapatite/Chitosan Composite Layers

Author:

Zarif Maria Elena12ORCID,Bita Bogdan13ORCID,Yehia-Alexe Sasa Alexandra13ORCID,Negut Irina1ORCID,Gradisteanu Pircalabioru Gratiela456,Andronescu Ecaterina278ORCID,Groza Andreea1

Affiliation:

1. National Institute for Lasers, Plasma and Radiation Physics, 077125 Măgurele, Romania

2. Faculty of Chemical Engineering and Biotechnologies, University Politehnica of Bucharest, 011061 Bucharest, Romania

3. Faculty of Physics, University of Bucharest, 077125 Măgurele, Romania

4. eBio-Hub Research Center, University Politehnica of Bucharest-CAMPUS, 6 Iuliu Maniu Boulevard, 061344 Bucharest, Romania

5. Research Institute of the University of Bucharest (ICUB), University of Bucharest, 050657 Bucharest, Romania

6. Department of Microbiology and Immunology, Faculty of Biology, University of Bucharest, 050657 Bucharest, Romania

7. Academy of Romanian Scientists, 3 Ilfov Str., District 5, 050044 Bucharest, Romania

8. National Research Center for Micro and Nanomaterials, University Politehnica of Bucharest, 060042 Bucharest, Romania

Abstract

In this work results are presented on the evaluation of HAp, HApSr, HAp_CS, and HApSr_CS layers deposited on Ti substrates regarding L929 cell viability and cytotoxicity as well as antimicrobial activity against Staphylococcus aureus, in connection with their physicochemical properties. The HAp and HApSr layers generated by radio-frequency magnetron sputtering technique were further covered with chitosan by a matrix-assisted pulsed laser evaporation technique. During the plasma depositions, the Ti substrates were heated externally by a home-made oven above 100 °C. The HApSr_CS layers generated on the unpolished Ti substrates at 100 °C and 400 °C showed the highest biocompatibility properties and antimicrobial activity against Staphylococcus aureus. The morphology of the layer surfaces, revealed by scanning electron microscopy, is dependent on substrate temperature and substrate surface roughness. The optically polished surfaces of Ti substrates revealed grain-like and microchannel structure morphologies of the layers deposited at 25 °C substrate temperature and 400 °C, respectively. Chitosan has no major influence on HAp and HApSr layer surface morphologies. X-ray photoelectron spectroscopy indicated the presence of Ca 2p3/2 peak characteristic of the HAp structure even in the case of the HApSr_CS samples generated at a 400 °C substrate temperature. Fourier transform infrared spectroscopy investigations showed shifts in the wavenumber positions of the P-O absorption bands as a function of Sr or chitosan presence in the HAp layers generated at 25, 100, and 400 °C substrate temperatures.

Funder

Ministry of Research, Innovation and Digitization

Ministry of Research, Innovation, and Digitization, CNCS—UEFISCDI

Publisher

MDPI AG

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