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直流对钛牙科种植体表面结构和细胞相容性的影响。

Effect of direct current on surface structure and cytocompatibility of titanium dental implants.

出版信息

Int J Oral Maxillofac Implants. 2014 May-Jun;29(3):735-42. doi: 10.11607/jomi.3342.

Abstract

PURPOSE

A low direct current can be used to disinfect dental titanium implants in simulated physiologic environments. The aim of this study was to determine whether this treatment affects implant surface structure and cytocompatibility.

MATERIALS AND METHODS

Titanium test disks with a sandblasted, acid-etched, large-grit (SLA) surface were placed as anodes in an electrolytic bath with physiologic saline and treated with 15 mA of current for 15 minutes. Surfaces were analyzed by light and electron microscopy and contact angle measurement. Depth profile analyses of SLA disks were run at subsurface levels from 0 to 1,000 nm. The proliferation and viability of preosteoblastic cells and human foreskin fibroblasts on implant surfaces were assessed. Alkaline phosphatase (ALP) activity was determined with and without exposure to bone morphogenetic protein-2 (BMP-2). Mineralization was determined after 4 weeks.

RESULTS

A blue discoloration was observed after treating the SLA disks, but no damage was recognized microscopically. An oxidation layer formed on the surface and the wettability of the disks increased significantly. Cell proliferation and initial maturation were not affected by the treatment. Mineralization and ALP activity of BMP-exposed cells, however, were slightly but significantly reduced on test disks.

CONCLUSIONS

The current study showed that the alterations in implant color after electrochemical treatment did not reflect significant surface changes, which would preclude cell adhesion and growth or have a major impact on osteoblastic differentiation or maturation.

摘要

目的

低直流电流可用于在模拟生理环境中对牙科钛种植体进行消毒。本研究旨在确定这种处理是否会影响种植体表面结构和细胞相容性。

材料和方法

将具有喷砂酸蚀大颗粒(SLA)表面的钛测试盘作为阳极放置在生理盐水电解槽中,并以 15 mA 的电流处理 15 分钟。通过光镜和电子显微镜以及接触角测量对表面进行分析。在亚表面水平(从 0 到 1000nm)对 SLA 盘进行深度剖面分析。评估种植体表面前成骨细胞和人包皮成纤维细胞的增殖和活力。在存在和不存在骨形态发生蛋白-2(BMP-2)的情况下测定碱性磷酸酶(ALP)活性。4 周后测定矿化情况。

结果

处理 SLA 盘后观察到蓝色变色,但显微镜下未识别出损伤。表面形成氧化层,盘的润湿性显著增加。处理未影响细胞增殖和初始成熟。然而,暴露于 BMP 的细胞的矿化和 ALP 活性在测试盘中略有但显著降低。

结论

本研究表明电化学处理后种植体颜色的变化并不反映明显的表面变化,这将阻止细胞黏附和生长,或对成骨细胞分化或成熟产生重大影响。

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