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首页> 外文期刊>Journal of materials science >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
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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

机译:MBCP陶瓷颗粒(TricOs?)加纤维蛋白密封剂(Tisseel?)与MBCP陶瓷颗粒作为假体周围大骨缺损的填充剂的生物功能:一项绵羊研究

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摘要

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 arnmodel 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.
机译:我们的目的是用微巨噬性双相磷酸钙(MBCP)颗粒(TricOs?)或与纤维蛋白封闭剂(Tisseel?)混合的MBCP颗粒填充缺损后,对具有基本稳定性的未经处理的钛植入物进行骨定植量化。在20只绵羊的膝盖上进行内侧关节切开术,以形成骨缺损(深16毫米;直径10毫米),然后锚定钛螺钉。缺陷中填充了TricOs或TricOs-Tisseel颗粒,带孔的MBCP垫圈,钛垫圈和钛螺钉。在第3、6、12和26周对绵羊实施安乐死。从第12周开始,两组中与螺钉的8 mm锚固部分接触的骨骼百分比均增加,从而证实了其主要稳定性。在第26周时,两组的骨定植情况相似,而TricOs-Tisseel组的陶瓷生物降解更快(P = 0.0422)。骨定植的向心性质是明显的。与钛植入物表面的骨接触微不足道。总之,使用arnmodel可以在钛植入物周围重现较大的干bone端骨缺损,并具有基本的稳定性,其中充满了TricOs陶瓷颗粒或TricOs颗粒与Tisseel纤维蛋白密封胶混合的混合物,这表明向TricOs中添加纤维蛋白可以增强骨骼填充外科技术。

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  • 来源
    《Journal of materials science》 |2010年第6期|P.1949-1958|共10页
  • 作者单位

    UPSP BBToCex, Ecole Nationale Veterinaire de Nantes, BP 40706, 44307 Nantes Cedex 3, France INSERM U922, LHEA Faculty of Medicine, Angers, France;

    rnUPSP BBToCex, Ecole Nationale Veterinaire de Nantes, BP 40706, 44307 Nantes Cedex 3, France INSERM U922, LHEA Faculty of Medicine, Angers, France;

    rnINSERM U791, Laboratory for Osteoarticular and Dental Tissue Engineering, Faculty of Dental Surgery, Nantes University, Nantes, France;

    rnUPSP BBToCex, Ecole Nationale Veterinaire de Nantes, BP 40706, 44307 Nantes Cedex 3, France INSERM U791, Laboratory for Osteoarticular and Dental Tissue Engineering, Faculty of Dental Surgery, Nantes University, Nantes, France INSERM CIC-IT Biomaterials, CHU Bordeaux, Hopital Xavier Arnozan, Bordeaux, France;

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