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比格犬肱骨中纳米-微米钛种植体表面处理的组织学评估

Histological Evaluation of Nano-Micro Titanium Implant Surface Treatment in Beagle Humerus.

作者信息

Yun Kwidug, Kang Seongsoo, Oh Gyejeong, Lim Hyunpil, Lee Kwangmin, Yang Hongso, Vang Mongsook, Park Sangwon

出版信息

J Nanosci Nanotechnol. 2016 Feb;16(2):1887-9. doi: 10.1166/jnn.2016.11923.

Abstract

The objective of this study was to investigate the effects of nano-micro titanium implant surface using histology in beagle dogs. A total of 48 screw-shaped implants (Megagen, Daegu, Korea) which dimensions were 4 mm in diameter and 8.5 mm in length, were used. The implants were classified into 4 groups (n = 12): machined surface (M group), RBM (Resorbable Blasting Media) surface (R group), nano surface which is nanotube formation on the machined surface (MA group) and nano-micro surface which is nanotube formation on the RBM surface (RA group). Anodic oxidation was performed at a constant voltage of 20 V for 10 min using a DC power supply (Fine Power F-3005; SG EMD, Anyang, Korea). The bone blocks were investigated using histology. There was no inflammation around implants, and new bone formation was shown along with the nano-micro titanium implant surfaces. The amount of bone formation was increased depending on time comparing 4 weeks and 12 weeks. At 12 weeks, lamellar bone was more formed along with the nano-micro titanium implant surfaces than 4 weeks. It indicated that nano-micro surface showed good result in terms of osseointegration.

摘要

本研究的目的是通过组织学方法在比格犬中研究纳米-微米钛种植体表面的影响。总共使用了48枚直径4毫米、长度8.5毫米的螺旋形种植体(韩国大邱的美格真公司生产)。这些种植体被分为4组(每组n = 12):机械加工表面组(M组)、可吸收喷砂介质表面组(R组)、在机械加工表面形成纳米管的纳米表面组(MA组)以及在可吸收喷砂介质表面形成纳米管的纳米-微米表面组(RA组)。使用直流电源(韩国安养市SG EMD公司的Fine Power F - 3005)在20 V恒定电压下进行10分钟的阳极氧化处理。通过组织学方法对骨块进行研究。种植体周围未出现炎症,纳米-微米钛种植体表面有新骨形成。与4周时相比,骨形成量随时间增加。在12周时,纳米-微米钛种植体表面形成的板层骨比4周时更多。这表明纳米-微米表面在骨结合方面显示出良好的效果。

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