Macrophages, the main marker in biocompatibility evaluation of new hydrogels after subcutaneous implantation in rats

Author:

Lužajić Božinovski Tijana1,Todorović Vera2,Milošević Ivan1,Prokić Bogomir Bolka3,Gajdov Vladimir1,Nešović Katarina4,Mišković-Stanković Vesna4,Marković Danica1ORCID

Affiliation:

1. Department of Histology and Embryology, University of Belgrade Faculty of Veterinary Medicine, Belgrade, Serbia

2. Department of Histology and Embryology, School of Medicine of University of Zenica, Zenica, Bosnia and Herzegovina

3. Department of Surgery, Orthopedy and Ophthalmology, Faculty of Veterinary Medicine, Belgrade, Serbia

4. Department of Physical Chemistry and Electrochemistry, Faculty of Technology and Metallurgy, University of Belgrade, Belgrade, Serbia

Abstract

Biocompatibility of materials is one of the most important conditions for their successful application in tissue regeneration and repair. Cell-surface interactions stimulate adhesion and activation of macrophages whose acquaintance can assist in designing novel biomaterials that promote favorable macrophage–biomaterial surface interactions for clinical application. This study is designed to determine the distribution and number of macrophages as a means of biocompatibility evaluation of two newly synthesized materials [silver/poly(vinyl alcohol) (Ag/PVA) and silver/poly(vinyl alcohol)/graphene (Ag/PVA/Gr) nanocomposite hydrogels] in vivo, with approval of the Ethics Committee of the Faculty of Veterinary Medicine, University of Belgrade. Macrophages and giant cells were analyzed in tissue sections stained by routine H&E and immunohistochemical methods (CD68+). Statistical relevance was determined in the statistical software package SPSS 20 (IBM corp). The results of the study in terms of the number of giant cells localized around the implant showed that their number was highest on the seventh postoperative day (p.o.d.) in the group implanted with Ag/PVA hydrogels, and on the 30th p.o.d. in the group implanted with Ag/PVA/Gr. Interestingly, the number of macrophages measured in the capsular and pericapsular space was highest in the group implanted with the commercial Suprasorb© material. The increased macrophage number, registered around the Ag/PVA/Gr implant on 60th p.o.d. indicates that the addition of graphene can, in a specific way, modulate different biological responses of tissues in the process of wound healing, regeneration, and integration.

Funder

Ministarstvo ProsveteNauke i Tehnološkog Razvoja

European Union’s Horizon 2020 research and innovation programme

Publisher

SAGE Publications

Subject

Biomedical Engineering,Biomaterials

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