The activity of monocyte-derived macrophages after stimulation with platelet-rich and platelet-poor concentrates. Study on an ovine model of insertion of a tibial implant coated with silicon-doped diamond-like carbon

Author:

Szymczak Bartłomiej1ORCID,Junkuszew Andrzej2ORCID,Patkowski Krzysztof2ORCID,Szponder Tomasz3ORCID,Ngoc Dominika Nguyen1ORCID,Drzewiecka Beata1ORCID,Sobczyńska-Rak Aleksandra3ORCID,Wessely-Szponder Joanna1ORCID

Affiliation:

1. 1 Sub-Department of Pathophysiology, Department of Preclinical Veterinary Sciences, University of Life Sciences , Lublin , Poland

2. 2 Department of Animal Breeding and Agricultural Consulting, Faculty of Animal Sciences and Bioeconomy, University of Life Sciences , Lublin , Poland

3. 3 Department and Clinic of Animal Surgery, Faculty of Veterinary Medicine, University of Life Sciences , Lublin , Poland

Abstract

Abstract Introduction Macrophages are crucial immune cells that play a role in tissue repair and can exhibit pro- or anti-inflammatory behaviour based on environmental stimulation. Their functional phenotype can be affected by platelet-derived products as determined by those products’ composition. When the inflammatory response caused by implantation is excessive, it can lead to rejection of the implant. Therefore, a thorough evaluation of implant haemocompatibility is necessary to minimise undesirable consequences. Material and Methods In an in vitro study, monocyte-derived macrophages (MDMs) were obtained from the whole blood of sheep after a silicon-doped diamond-like carbon–coated implant insertion. These MDMs were then exposed to autologous platelet-derived products for functional marker analysis. Results Platelet-poor plasma (PPP) and pure platelet-rich plasma (P-PRP) stimulation increased arginase-1 activity, while leukocyte-rich PRP stimulation produced a mixed response involving higher O2 (6.49 ± 2.43 nM vs non-stimulated 3.51 ± 1.23 nM, P-value < 0.05) and NO (3.28 ± 1.38 μM vs non-stimulated 2.55 ± 0.32μM, P-value < 0.05) generation. Conclusion Using PPP and P-PRP stimulation in post-implantation procedures may contribute to the polarisation of macrophages towards the M2-like pro-resolving phenotype, thereby accelerating wound healing. This would also prevent implant degradation due to an excessive inflammatory process.

Publisher

Walter de Gruyter GmbH

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