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PMID: 42194255 已发表 · epublish 英语

Meso-Scale Modifications in Additively Manufactured Zirconia: Topographical Design and Its Influence on Cell-Material Interactions.

Bioengineering (Basel, Switzerland) ·第 13 卷 ·第 5 期 ·2026-04-24

Hetzler S, Rues S, Zenthöfer A, Rammelsberg P, Kühle R, Lux CJ, Erber R, Roser CJ

摘要

Additive manufacturing enables the fabrication of patient-specific zirconia devices with integrated surface features; however, the biological effects of meso-scale topographies remain insufficiently understood. This in vitro study evaluated the influence of defined meso-scale surface modifications on osteoblast behavior using Digital Light Processing (DLP)-fabricated 3Y tetragonal zirconia polycrystal (3Y-TZP) and 5Y partially stabilized zirconia (5Y-PSZ). Planar control specimens and surfaces incorporating regularly distributed columnar structures (height: 100 µm; width: 40 µm; center-to-center spacing: 80, 120, and 160 µm; Mod-80, Mod-120, Mod-160) were fabricated and characterized after sintering. Cytotoxicity was assessed by elution testing and showed cell viability >98% for all groups. Osteoblast adhesion and proliferation (hFOB 1.19) were quantified using metabolic assays. Meso-scale modifications significantly increased early cell adhesion compared to planar controls (p < 0.05), with the strongest effect observed for Mod-160. No significant differences in proliferation rates were detected between groups (p > 0.05). Osteogenic differentiation was evaluated by RT-qPCR (RUNX2, ALPL, COL1A1, BGLAP), revealing material- and geometry-dependent responses. On 3Y-TZP, meso-scale structures, particularly Mod-160, were associated with sustained upregulation of BGLAP, whereas 5Y-PSZ exhibited less pronounced effects. Within the limitations of this in vitro study, meso-scale surface structuring of additively manufactured zirconia enhances early osteoblast adhesion without affecting proliferation and may influence osteogenic differentiation in a material-dependent manner.

关键词
3Y-TZP 5Y-PSZ additive manufacturing cell–material interaction dental implants digital light processing (DLP) meso-scale surface topography osteoblast adhesion osteogenic differentiation personalized dentistry regenerative medicine zirconia
文献信息
期刊
Bioengineering (Basel, Switzerland)
期刊简称
Bioengineering (Basel)
ISSN
2306-5354
发表日期
2026-04-24
语言
英语
国家/地区
Switzerland
NLM ID
101676056
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