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MBCP 陶瓷颗粒(TricOs)加纤维蛋白密封剂(Tisseel)与 MBCP 陶瓷颗粒作为大假体周围骨缺损填充剂的生物功能:一项绵羊研究。

Biofunctionality of MBCP ceramic granules (TricOs) plus fibrin sealant (Tisseel) versus MBCP ceramic granules as a filler of large periprosthetic bone defects: an investigative ovine study.

机构信息

UPSP BBToCex, Ecole Nationale Vétérinaire de Nantes, BP 40706, 44307 Nantes Cedex 3, France.

出版信息

J Mater Sci Mater Med. 2010 Jun;21(6):1949-58. doi: 10.1007/s10856-010-4043-3. Epub 2010 Mar 18.

Abstract

We aimed to quantify bone colonization toward an untreated titanium implant with primary stability following filling of the defect with micromacroporous biphasic calcium phosphate (MBCP) granules (TricOs) or MBCP granules mixed with fibrin sealant (Tisseel). Medial arthrotomy was performed on the knees of 20 sheep to create a bone defect (16 mm deep; 10 mm diameter), followed by anchorage of a titanium screw. Defects were filled with TricOs or TricOs-Tisseel granules, a perforated MBCP washer, a titanium washer and titanium screw. Sheep were euthanized at 3, 6, 12 and 26 weeks. From Week 12 onwards, the percentage of bone in contact with the 8 mm anchorage part of the screw increased in both groups, confirming its primary stability. At 26 weeks, whereas bone colonization was similar in both groups, biodegradation of ceramic was more rapid in the TricOs-Tisseel group (P = 0.0422). The centripetal nature of bone colonization was evident. Bone contact with the titanium implant surface was negligible. In conclusion, the use of a model that reproduces a large metaphyseal bone defect around a titanium implant with primary stability, filled with a mixture of either TricOs ceramic granules or TricOs granules mixed with Tisseel fibrin sealant, suggests that the addition of fibrin to TricOs enhances bone filling surgical technology.

摘要

我们旨在定量研究在使用微/大孔双相磷酸钙(MBCP)颗粒(TricOs)或 MBCP 颗粒与纤维蛋白密封剂(Tisseel)混合填充缺陷后,未处理的钛植入物的原始稳定性下的骨定植情况。对 20 只绵羊的膝关节进行内侧关节切开术,以创建一个骨缺损(深 16mm,直径 10mm),然后固定钛螺钉。用 TricOs 或 TricOs-Tisseel 颗粒、穿孔的 MBCP 垫圈、钛垫圈和钛螺钉填充缺陷。绵羊在 3、6、12 和 26 周时被安乐死。从第 12 周开始,两组中与螺钉 8mm 锚固部分接触的骨百分比均增加,证实了其原始稳定性。在 26 周时,尽管两组的骨定植情况相似,但 TricOs-Tisseel 组陶瓷的生物降解速度更快(P=0.0422)。骨定植的向心性明显。与钛植入物表面的骨接触可以忽略不计。总之,使用一种模型来模拟在具有原始稳定性的钛植入物周围产生大的干骺端骨缺损,并填充 TricOs 陶瓷颗粒或 TricOs 颗粒与 Tisseel 纤维蛋白密封剂的混合物,表明在 TricOs 中添加纤维蛋白可增强骨填充手术技术。

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