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钛合金等离子体化学氧化对大鼠骨-种植体接触的影响。

The effect of plasma chemical oxidation of titanium alloy on bone-implant contact in rats.

机构信息

Klinik für Unfall-, Hand- und Wiederherstellungschirurgie, Universitätsklinikum Jena, Erlanger Allee 101, 07747 Jena, Germany.

出版信息

Biomaterials. 2011 Nov;32(32):8041-7. doi: 10.1016/j.biomaterials.2011.07.046. Epub 2011 Aug 16.

Abstract

Many different technologies have been used to enhance osseointegration in orthopaedic and dental implant surgery. Hydroxyapatite coatings, pure or in combination with growth factors or bisphosphonates, showed improved osseointegration of titanium alloy implants. We choose a different approach to enhance osseointegration: plasma chemical oxidation was used to modify the surface of titanium alloy implants. This technique converts the nm-thin natural occurring titanium oxide layer on an implant to a 4 μm thick ceramic coating (TiOB surface). Bioactive TiOB surfaces have a macroporous structure and were loaded with calcium and phosphorus, while bioinert TiOB surfaces are smooth. A rat tibial model with bilateral placement of titanium alloy implants was employed to analyze the bone response to TiOB surfaces in vivo. 64 rats were randomly assigned to four groups of implants: (1) titanium alloy (control), (2) titanium alloy, type III anodization, (3) bioinert TiOB surface and (4) bioactive TiOB surface. Mechanical fixation, peri-implant-bone area and bone contact were evaluated by pull-out tests and histology at three and eight weeks. Shear strength and bone contact at eight weeks were significantly increased in the bioactive TiOB group compared to all other groups. The results of plasma chemical oxidation in a rat model showed that the bioactive TiOB surface has a positive effect on implant anchorage by enhancing the bone-implant contact in normal bone.

摘要

许多不同的技术已被用于增强骨科和牙科植入物手术中的骨整合。羟基磷灰石涂层,无论是纯的还是与生长因子或双膦酸盐结合的,都显示出改善了钛合金植入物的骨整合。我们选择了一种不同的方法来增强骨整合:等离子体化学氧化被用于修饰钛合金植入物的表面。该技术将植入物上的纳米级天然钛氧化物层转化为 4 µm 厚的陶瓷涂层(TiOB 表面)。生物活性 TiOB 表面具有大孔结构,并负载钙和磷,而生物惰性 TiOB 表面则很光滑。使用双侧钛合金植入物的大鼠胫骨模型来分析 TiOB 表面在体内的骨反应。64 只大鼠被随机分配到四个植入物组:(1)钛合金(对照),(2)钛合金,III 型阳极氧化,(3)生物惰性 TiOB 表面和(4)生物活性 TiOB 表面。通过拔出试验和 3 周和 8 周时的组织学评估机械固定、植入物周围骨区和骨接触。与所有其他组相比,生物活性 TiOB 组的剪切强度和 8 周时的骨接触明显增加。大鼠模型中的等离子体化学氧化结果表明,生物活性 TiOB 表面通过增强正常骨中的骨-植入物接触,对植入物固定具有积极影响。

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