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在钛、钛锆和氧化锆表面使用钛制器械、塑料器械、二极管激光以及钛刷进行器械操作后的细胞附着情况。

Cell Attachment Following Instrumentation with Titanium and Plastic Instruments, Diode Laser, and Titanium Brush on Titanium, Titanium-Zirconium, and Zirconia Surfaces.

作者信息

Lang Melissa S, Cerutis D Roselyn, Miyamoto Takanari, Nunn Martha E

出版信息

Int J Oral Maxillofac Implants. 2016 Jul-Aug;31(4):799-806. doi: 10.11607/jomi.4440.

Abstract

PURPOSE

The aim of this study was to evaluate the surface characteristics and gingival fibroblast adhesion of disks composed of implant and abutment materials following brief and repeated instrumentation with instruments commonly used in procedures for implant maintenance, stage-two implant surgery, and periimplantitis treatment.

MATERIALS AND METHODS

One hundred twenty disks (40 titanium, 40 titaniumzirconium, 40 zirconia) were grouped into treatment categories of instrumentation by plastic curette, titanium curette, diode microlaser, rotary titanium brush, and no treatment. Twenty strokes were applied to half of the disks in the plastic and titanium curette treatment categories, while half of the disks received 100 strokes each to simulate implant maintenance occurring on a repetitive basis. Following analysis of the disks by optical laser profilometry, disks were cultured with human gingival fibroblasts. Cell counts were conducted from scanning electron microscopy (SEM) images.

RESULTS

Differences in surface roughness across all instruments tested for zirconia disks were negligible, while both titanium disks and titaniumzirconium disks showed large differences in surface roughness across the spectrum of instruments tested. The rotary titanium brush and the titanium curette yielded the greatest overall mean surface roughness, while the plastic curette yielded the lowest mean surface roughness. The greatest mean cell counts for each disk type were as follows: titanium disks with plastic curettes, titanium-zirconium disks with titanium curettes, and zirconia disks with the diode microlaser.

CONCLUSION

Repeated instrumentation did not result in cumulative changes in surface roughness of implant materials made of titanium, titanium-zirconium, or zirconia. Instrumentation with plastic implant curettes on titanium and zirconia surfaces appeared to be more favorable than titanium implant curettes in terms of gingival fibroblast attachment on these surfaces.

摘要

目的

本研究旨在评估在种植体维护、二期种植手术和种植体周围炎治疗过程中常用器械进行短暂和反复操作后,由种植体和基台材料制成的圆盘的表面特性和牙龈成纤维细胞黏附情况。

材料与方法

120个圆盘(40个钛制、40个钛锆合金制、40个氧化锆制)被分为以下处理类别:用塑料刮匙、钛刮匙、二极管微激光、旋转钛刷进行器械操作以及不进行处理。对塑料刮匙和钛刮匙处理类别的一半圆盘施加20次刮擦,而另一半圆盘各接受100次刮擦,以模拟反复进行的种植体维护。通过光学激光轮廓仪对圆盘进行分析后,将圆盘与人牙龈成纤维细胞一起培养。通过扫描电子显微镜(SEM)图像进行细胞计数。

结果

在所有测试器械中,氧化锆圆盘的表面粗糙度差异可忽略不计,而钛圆盘和钛锆合金圆盘在所有测试器械的表面粗糙度上均显示出较大差异。旋转钛刷和钛刮匙产生的总体平均表面粗糙度最大,而塑料刮匙产生的平均表面粗糙度最低。每种圆盘类型的最大平均细胞计数如下:钛圆盘搭配塑料刮匙、钛锆合金圆盘搭配钛刮匙、氧化锆圆盘搭配二极管微激光。

结论

反复器械操作并未导致由钛、钛锆合金或氧化锆制成的种植体材料表面粗糙度的累积变化。就这些表面上牙龈成纤维细胞的附着而言,在钛和氧化锆表面使用塑料种植体刮匙进行器械操作似乎比使用钛种植体刮匙更有利。

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