Antimicrobial potential and osteoblastic cell growth on electrochemically modified titanium surfaces with nanotubes and selenium or silver incorporation

生物膜 核化学 结晶紫 阳极氧化 化学 抗菌剂 粘附 表皮葡萄球菌 细菌生长 电化学 微生物学 金黄色葡萄球菌 细菌 生物 电极 有机化学 物理化学 遗传学
作者
Kevin Staats,Magdalena Pilz,Jie Sun,Tzvetanka Boiadjieva-Scherzer,Hermann Kronberger,Selma Tobudic,Reinhard Windhager,Johannes Holinka
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:12 (1) 被引量:12
标识
DOI:10.1038/s41598-022-11804-6
摘要

Abstract Titanium nanotube surfaces containing silver, zinc, and copper have shown antimicrobial effects without decreasing osteoblastic cell growth. In this in-vitro study we present first results on the biological evaluation of surface modifications by incorporating selenium and silver compounds into titanium-dioxide (TiO 2 ) nanotubes by electrochemical deposition. TiO 2 -nanotubes (TNT) and Phosphate-doped TNT (pTNT) were grown on the surface of Ti6Al4V discs by anodization. Hydroxyapatite (HA), selenium (Se) and silver (Ag) compounds were incorporated by electrochemical deposition. Colony forming units of Staphylococcus epidermidis (DSM 3269) were significantly decreased in SepTNT (0.97 ± 0.18 × 10 6 CFU/mL), SepTNT-HA (1.2 ± 0.39 × 10 6 CFU/mL), AgpTNT (1.36 ± 0.42 × 10 6 CFU/mL) and Ag 2 SepTNT (0.999 ± 0.12 × 10 6 CFU/mL) compared to the non-modified control (2.2 ± 0.21 × 10 6 CFU/mL). Bacterial adhesion was calculated by measuring the covered area after fluorescence staining. Adhesion was lower in SepTNT (37.93 ± 12%; P = 0.004), pTNT (47.3 ± 6.3%, P = 0.04), AgpTNT (24.9 ± 1.8%; P < 0.001) and Ag 2 SepTNT (14.9 ± 4.9%; P < 0.001) compared to the non-modified control (73.7 ± 11%). Biofilm formation and the growth of osteoblastic cells (MG-63) was observed by using Crystal Violet staining. Biofilm formation was reduced in SepTNT (22 ± 3%, P = 0.02) and Ag 2 SepTNT discs (23 ± 11%, P = 0.02) compared to the non-modified control (54 ± 8%). In comparison with the non-modified control the modified SepTNT-HA and pTNT surfaces showed a significant higher covered area with osteoblastic MG-63-cells. Scanning electron microscope (SEM) images confirmed findings regarding bacterial and osteoblastic cell growth. These findings show a potential synergistic effect by combining selenium and silver with titanium nanotubes.
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