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微-大孔双相磷酸钙颗粒与纤维蛋白密封剂复合的复合材料的体内生物学性能

In vivo biological performance of composites combining micro-macroporous biphasic calcium phosphate granules and fibrin sealant.

作者信息

Jegoux Franck, Goyenvalle Eric, Bagot D'arc Maurice, Aguado Eric, Daculsi Guy

机构信息

EMI 99 03, Dental Surgery Faculty, INSERM Research Center on Materials of Biological Interest, Place A. Ricordeau, 44042 Nantes Cedex, France.

出版信息

Arch Orthop Trauma Surg. 2005 Apr;125(3):153-9. doi: 10.1007/s00402-004-0748-4. Epub 2005 Mar 11.

Abstract

INTRODUCTION

Fibrin glues are currently used by surgeons and can facilitate the handling of biomaterials. Combining fibrin glue with calcium phosphate bioceramics gives a mouldable composite that cements the granules into the implantation site. In addition to the mechanical aspect of the composite, it has been suggested that the mixture also promotes wound healing. These human blood derivatives contain natural (aprotinin) or synthetic (tranexamic acid) antifibrinolytic substances. We compared the bioactivity of two composites combining calcium phosphate granules with two different types of fibrin glue, one with aprotinin and the other with tranexamic acid.

MATERIALS AND METHODS

The composite was composed of fibrin glue (Tissucol) and 1 to 2 mm granules of biphasic calcium phosphate granules (MBCP) with a volume ratio of 1 for 2. Bone cavities were drilled in 12 New Zealand rabbits and filled with a composite with aprotinin-fibrin glue on the right condyle and one with tranexamic acid-fibrin glue on the left condyle. The rabbits were randomized into two groups: 3 and 6 weeks of delay. Light microscopy, scanning electron microscopy and image analysis were performed.

RESULTS

No adverse reactions were observed in either sample. Bony ingrowth associated with bioceramic resorption by osteoclastic TRAP-positive cells was noted. No significant difference was observed between the two composites. The bony ingrowth and ceramic resorption were qualitatively and quantitatively similar with both composites.

CONCLUSION

This study demonstrated that the choice of a natural (aprotinin) or synthetic (tranexamic acid) antifibrinolytic agent in the fibrin sealant associated with calcium phosphate granules and used as a bone substitute had no effect on the bioactivity of the composite. It remained efficient in bone reconstruction, no adverse effects were observed, and the bony ingrowth was qualitatively and quantitatively equivalent with the two types of fibrin sealant.

摘要

引言

纤维蛋白胶目前被外科医生使用,可便于生物材料的处理。将纤维蛋白胶与磷酸钙生物陶瓷相结合可得到一种可塑形的复合材料,该材料能将颗粒粘结到植入部位。除了复合材料的机械性能外,有人认为这种混合物还能促进伤口愈合。这些人血衍生物含有天然(抑肽酶)或合成(氨甲环酸)抗纤溶物质。我们比较了两种将磷酸钙颗粒与两种不同类型纤维蛋白胶相结合的复合材料的生物活性,一种含抑肽酶,另一种含氨甲环酸。

材料与方法

复合材料由纤维蛋白胶(Tissucol)和1至2毫米的双相磷酸钙颗粒(MBCP)组成,体积比为1比2。在12只新西兰兔身上钻出骨腔,右侧髁突填充含抑肽酶 - 纤维蛋白胶的复合材料,左侧髁突填充含氨甲环酸 - 纤维蛋白胶的复合材料。兔子被随机分为两组:延迟3周和6周。进行了光学显微镜、扫描电子显微镜和图像分析。

结果

两个样本均未观察到不良反应。注意到破骨细胞TRAP阳性细胞与生物陶瓷吸收相关的骨向内生长。两种复合材料之间未观察到显著差异。两种复合材料的骨向内生长和陶瓷吸收在质量和数量上相似。

结论

本研究表明,在与磷酸钙颗粒相关并用作骨替代物的纤维蛋白密封剂中选择天然(抑肽酶)或合成(氨甲环酸)抗纤溶剂对复合材料的生物活性没有影响。它在骨重建中仍然有效,未观察到不良反应,并且两种类型的纤维蛋白密封剂在骨向内生长的质量和数量上相当。

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