The Effect of Surface Treatment Methods on the Surface Characteristics and Biological Activity of Zirconia Implants

Zirconia implants are promising alternatives to titanium, yet optimal surface treatment protocols that preserve their surface properties and biocompatibility are not well-established. This study aimed to evaluate the effects of various surface treatment methods-ethylene oxide (EO), hydrogen peroxide plasma (HPP), electron beam (EB), and their combinations-on the surface characteristics and biological performance of fully sintered 3Y-TZP zirconia. Fully sintered 3Y-TZP zirconia slices were treated using EO, HPP, EB, HPP + EO, or HPP + EB. Surface characteristics, including hydrophilicity, hydrocarbon contamination, and elemental composition, were assessed. The biological responses of human bone marrow stromal cells (hBMSCs) and human gingival fibroblasts (HGFs), covering cell proliferation, cytoskeleton development, osteogenic differentiation, and adhesion, were evaluated. While the HPP group did not show the highest hydrophilicity, it effectively prevented hydrocarbon contamination and maintained a substantial Zr concentration. Surfaces treated with HPP demonstrated significant enhancements in hBMSC and HGF proliferation, cytoskeleton development, osteogenic differentiation, and adhesion, outperforming all other groups. Hydrogen peroxide plasma (HPP) surface treatment is a feasible technique for zirconia implants, as it effectively maintains surface integrity and promotes superior biological activity compared to other methods.

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Publication Details

Journal
Journal of Biomedical Materials Research Part B Applied Biomaterials
Published
2026-09-29
DOI
https://doi.org/10.1002/jbm.b.70136
Primary Topic
Bone Tissue Engineering Materials
Type
article
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article

The Effect of Surface Treatment Methods on the Surface Characteristics and Biological Activity of Zirconia Implants

Yizhe Fu, Nan Li, Jianmin Han, GuangLiang Niu et al.
Journal of Biomedical Materials Research Part B Applied Biomaterials
Bone Tissue Engineering Materials
article

The Effect of Surface Treatment Methods on the Surface Characteristics and Biological Activity of Zirconia Implants

Yizhe Fu, Nan Li, Jianmin Han, GuangLiang Niu, Yun Lan, Yuying Lu, Yuqi Li
article en

Abstract

Zirconia implants are promising alternatives to titanium, yet optimal surface treatment protocols that preserve their surface properties and biocompatibility are not well-established. This study aimed to evaluate the effects of various surface treatment methods-ethylene oxide (EO), hydrogen peroxide plasma (HPP), electron beam (EB), and their combinations-on the surface characteristics and biological performance of fully sintered 3Y-TZP zirconia. Fully sintered 3Y-TZP zirconia slices were treated using EO, HPP, EB, HPP + EO, or HPP + EB. Surface characteristics, including hydrophilicity, hydrocarbon contamination, and elemental composition, were assessed. The biological responses of human bone marrow stromal cells (hBMSCs) and human gingival fibroblasts (HGFs), covering cell proliferation, cytoskeleton development, osteogenic differentiation, and adhesion, were evaluated. While the HPP group did not show the highest hydrophilicity, it effectively prevented hydrocarbon contamination and maintained a substantial Zr concentration. Surfaces treated with HPP demonstrated significant enhancements in hBMSC and HGF proliferation, cytoskeleton development, osteogenic differentiation, and adhesion, outperforming all other groups. Hydrogen peroxide plasma (HPP) surface treatment is a feasible technique for zirconia implants, as it effectively maintains surface integrity and promotes superior biological activity compared to other methods.

Journal of Biomedical Materials Research Part B Applied BiomaterialsVol. 114(10)
King University (US), Nanchang University (CN), Peking University (CN), First Affiliated Hospital of Jiangxi Medical College (CN), Peking University Stomatological Hospital (CN), Beijing Chang'an Integrated Traditional Chinese and Western Medicine Hospital (CN), Stomatology Hospital (CN), First Affiliated Hospital of Nanchang University (CN)
Clean water and sanitation
Openalex Percentile: Top 22%
Bone Tissue Engineering Materials
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