多孔磷灰石与硅灰石5种不同孔径微晶玻璃的骨传导定量比较

Takashi Saito, M. Takemoto, S. Fujibayashi, M. Neo, T. Murakami, F. Miyaji, Toshikazu Nakamura
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引用次数: 3

摘要

控制陶瓷的孔隙形态和物理化学特性对骨传导具有重要意义。在这项研究中,我们确定了含磷灰石和硅灰石的微晶玻璃(GC-AW)的多孔结构对骨传导的影响。为此,我们为每种材料制备了5种不同孔隙结构的GC-AW圆柱体(6 × 15mm)(大孔径、互连孔径和微孔(孔径约为1µm)),如下图所示。材料1000G: 800µm, 150-200µm,±;材料1000S: 800µm, 175µm;材质300G: 250µm、20µm、++;材质300S: 250µm、20µm、+;和200S: 200µm, 50-80µm, ')。为了评估体内骨传导,将这些材料植入兔股骨髁上直径6mm的孔中。在6周和12周时,300G、300S和200S组的成骨面积百分比显著增加。植入后3周,1000G、1000S、200S组骨长入速度明显快于300G、300S组。这些结果表明,孔径为800µm的GC-AW不适合骨生长,孔径大于50µm的GC-AW可以实现快速骨传导。此外,在GC-AW等高生物活性材料的情况下,微孔可能对骨传导并不重要。
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Quantitative Comparison of Osteoconduction between Porous Apatite and Wollastonite-Containing Glass-Ceramics with 5 Different Pore Sizes
Control of the porous morphology and physic- ochemical characteristics of ceramics is important for osteoconduction. In this study, we determined the influence of the porous structure of glass-ceramics that contain apatite and wollastonite (GC-AW) on osteoconduction. For this purpose, we prepared GC-AW cylinders (6 × 15mm) with 5 different pore structures (macropore size, interconnecting pore size, and presence of micropores (pore size, approximately 1µm) for each material were as follows. Material 1000G: 800µm, 150-200µm, ±; material 1000S: 800µm, 175µm, �; material 300G: 250µm, 20µm, and ++; Material 300S: 250µm, 20µm, +; and 200S: 200µm, 50-80µm, �). To evaluate osteoconduction in vivo, these materials were implanted into holes (6mm diameter) made in rabbit femoral condyles. The percentage of bone ingrowth area significantly increased in the case of 300G, 300S, and 200S at 6 and 12 weeks. At 3 weeks after implantation, the rate of bone ingrowth was faster when 1000G, 1000S, and 200S were used than when 300G and 300S were used. These results suggest that GC-AW with a pore size of 800µm is unsuitable for bone growth, and rapid osteoconduction can be achieved at interconnecting pore sizes exceeding 50µm. Further, micropores may not be important for osteoconduction in the case of highly bioactive materials such as GC-AW.
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