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双相磷酸钙陶瓷与纤维蛋白胶复合材料诱导绵羊肌肉内骨组织形成

Bone tissue formation in sheep muscles induced by a biphasic calcium phosphate ceramic and fibrin glue composite.

作者信息

Le Nihouannen Damien, Saffarzadeh Afchine, Gauthier Olivier, Moreau Françoise, Pilet Paul, Spaethe Reiner, Layrolle Pierre, Daculsi Guy

机构信息

INSERM U791, Laboratoire d'ingénierie ostéoarticulaire et dentaire, Univ. Nantes, Faculté de chirurgie dentaire, 1 place Alexis Ricordeau, Nantes, France.

出版信息

J Mater Sci Mater Med. 2008 Feb;19(2):667-75. doi: 10.1007/s10856-007-3206-3. Epub 2007 Jul 10.

Abstract

Some biomaterials are able to induce ectopic bone formation in muscles of large animals. The osteoinductive potential of macro- micro-porous biphasic calcium phosphate (MBCP) ceramic granules with fibrin glue was evaluated by intramuscular implantation for 6 months in six adult female sheep. The MBCP granules were 1-2 mm in size and were composed of hydroxyapatite (HA) and beta-tricalcium phosphate (beta-TCP) in a 60/40 ratio. The fibrin glue was composed of fibrinogen, thrombin and other biological factors. After 6 months of implantation in the dorsal muscles of sheep, the explants were rigid. Histology, back-scattered electron microscopy and micro-computed tomography of the implants indicated that approximately 12% of mineralized bone had formed in between the MBCP granules. The ectopic bone appeared well-mineralized with mature osteocytes and Haversian structures. In addition, the number and thickness of bone trabeculae formed in between the MBCP particles were similar to those measured in trabecular bone in sheep. The overall results therefore confirmed the formation of well-mineralized ectopic bone tissue after intramuscular implantation of MBCP/fibrin glue composites. These bone substitutes exhibiting osteoinductive properties could be used for the reconstruction of large bone defects.

摘要

一些生物材料能够在大型动物的肌肉中诱导异位骨形成。通过在六只成年雌性绵羊的肌肉内植入6个月,评估了带有纤维蛋白胶的大微孔双相磷酸钙(MBCP)陶瓷颗粒的骨诱导潜力。MBCP颗粒大小为1 - 2毫米,由羟基磷灰石(HA)和β-磷酸三钙(β-TCP)按60/40比例组成。纤维蛋白胶由纤维蛋白原、凝血酶和其他生物因子组成。在绵羊背部肌肉中植入6个月后,植入物变得坚硬。对植入物进行组织学、背散射电子显微镜和微计算机断层扫描显示,在MBCP颗粒之间形成了约12%的矿化骨。异位骨矿化良好,有成熟的骨细胞和哈弗斯结构。此外,在MBCP颗粒之间形成的骨小梁数量和厚度与绵羊小梁骨中测量的相似。因此,总体结果证实了在肌肉内植入MBCP/纤维蛋白胶复合材料后形成了矿化良好的异位骨组织。这些具有骨诱导特性的骨替代物可用于大骨缺损的重建。

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