Towards Enhanced Osteointegration: A Comparative and In-Depth Study of the Biocompatibility of an Innovative Calcium-Doped Zirconia Coating for Biomedical Implants
Tchinda Alex, Olivier Joubert, Richard Kouitat-Njiwa, Pierre Bravetti

TL;DR
This study shows that a new calcium-doped zirconia coating improves cell growth and bone formation, making it a promising material for dental implants.
Contribution
The novel 5% calcium-doped zirconia coating is shown to enhance biocompatibility and osteogenic differentiation compared to existing biomaterials.
Findings
The Ca-SZ coating improved cell viability and proliferation in Saos-2 and HaCaT cells.
The coating reduced pro-inflammatory cytokine levels compared to reference materials.
Exposure to Ca-SZ increased osteogenic markers and hydroxyapatite crystal formation in Saos-2 cells.
Abstract
Innovation in oral implantology is constantly on the move, with a constant search for new biomaterials to overcome many of the limitations of the biomaterials used in current implantable medical devices. This study explores the biocompatibility of an innovative 5% calcium-to-zirconia (Ca-SZ) coating deposited by PVD on TA6V substrates for use in oral implantology. In order to determine the contribution of the Ca-SZ coating, an in vitro biocompatibility study was carried out to assess the potential influence of the Ca-SZ coating (1) on the viability and proliferation of saos-2 and HaCaT cells over a short-term exposure period of 96 h, (2) on the synthesis of pro-inflammatory cytokines, and (3) on the synthesis of osteogenic differentiation markers over a long-term exposure period of 21 days, in comparison with reference biomaterials. The sampling consisted of n = 3 biological replicates,…
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Taxonomy
TopicsBone Tissue Engineering Materials · Dental Implant Techniques and Outcomes · Dental materials and restorations
