Ono K, Yamamuro T, Nakamura T, Kokubo T
Department of Orthopaedic Surgery, Faculty of Medicine, Kyoto University, Japan.
J Biomed Mater Res. 1990 Jan;24(1):11-20. doi: 10.1002/jbm.820240103.
The purpose of this study was to investigate bone formation after implantation of a mixture of apatite--wollastonite containing glass ceramic granules (A-W.GC, 220-355 microns) and fibrin glue with a low A-W.GC granular density. The fibrinogen was prepared from rat blood plasma. A mixture of A-W.GC granules and fibrin glue 1:4 in volume ratio (1:4 mixture) was implanted in the proximal metaphysis of the rat tibia, and bone formation was evaluated quantitatively by histomorphometry in undecalcified specimens. Microangiography was performed in animals sacrificed 5 days after the operation. The results were compared with those of a previous study in which a 1:1 mixture of A-W.GC granules and fibrin glue was used. With the 1:4 mixture, the A-W.GC density was 39.7% because of concentration of fibrin at packing. Good early vascularization comparable to that after implantation of the 1:1 mixture was observed. Bone formation proceeded at the same rate as after implantation of 1:1 mixture, but the level of the plateau was higher than that for the 1:1 mixture. The osteoconductive potential of the 1:4 A-W.GC-fibrin mixture was similar to that of the 1:1 mixture, and was higher than that of A-W.GC without fibrin.
本研究的目的是研究植入磷灰石-硅灰石含玻璃陶瓷颗粒(A-W.GC,220 - 355微米)与低A-W.GC颗粒密度的纤维蛋白胶的混合物后的骨形成情况。纤维蛋白原由大鼠血浆制备。将体积比为1:4的A-W.GC颗粒与纤维蛋白胶的混合物(1:4混合物)植入大鼠胫骨近端干骺端,并通过组织形态计量学对未脱钙标本中的骨形成进行定量评估。在术后5天处死的动物中进行微血管造影。将结果与先前使用A-W.GC颗粒与纤维蛋白胶1:1混合物的研究结果进行比较。对于1:4混合物,由于纤维蛋白在填充时的浓缩,A-W.GC密度为39.7%。观察到与植入1:1混合物后相当的良好早期血管化。骨形成的速率与植入1:1混合物后相同,但平台期水平高于1:1混合物。1:4 A-W.GC-纤维蛋白混合物的骨传导潜力与1:1混合物相似,且高于不含纤维蛋白的A-W.GC。