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磷酸钙玻璃水泥移植物在兔颅骨缺损中的成骨作用。

Osteoconductive effects of calcium phosphate glass cement grafts in rabbit calvarial defects.

机构信息

Department of Periodontology, Research Institute for Periodontal Regeneration College of Dentistry, Yonsei University, Seoul 120-752, Korea.

出版信息

J Biomed Mater Res B Appl Biomater. 2010 Oct;95(1):47-52. doi: 10.1002/jbm.b.31681.

Abstract

Calcium phosphate glass (CPG) is well-documented alloplastic bone graft material. The objective of this study was to evaluate the osteoconductive effect of newly developed calcium phosphate glass cement (CPGC) in rabbit calvarial defects. Three circular defects (8 mm diameter) were created on the rabbit calvarium. One defect was filled with biphasic calcium phosphate (BCP group) and one defect was filled with CPGC (CPGC group). The remaining defect was not filled as the control. Histologic and histometric analysis were performed at four and eight weeks following the implantation of materials. One-way ANOVA method was used to evaluated the significance between three groups (p < 0.05). The CPGC group did not show a statistical difference in new bone area compared with the control at all healing periods, but the bone formation rate of CPGC seemed to increase between four and eight weeks. This suggests the bone formation rate of CPGC is initially slow, but increases at a specific time, showing the possibility of greater bone formation with time. The resorption rate of CPGC was greater than BCP. Within the limits of this study, CPGC demonstrated good space maintaining capacity and had an osteoconductive effect, suggesting it could be successfully used to improve bone formation capacity.

摘要

磷酸钙玻璃(CPG)是一种有充分文献记载的异质骨移植材料。本研究的目的是评估新型磷酸钙玻璃水泥(CPGC)在兔颅骨缺损中的成骨作用。在兔颅骨上制作三个圆形缺损(8mm 直径)。一个缺损填充双相磷酸钙(BCP 组),一个缺损填充 CPGC(CPGC 组)。剩余的缺损不填充作为对照。在植入材料后 4 周和 8 周进行组织学和组织计量分析。采用单因素方差分析方法(one-way ANOVA method)比较三组之间的差异(p < 0.05)。CPGC 组在所有愈合期与对照组的新骨面积均无统计学差异,但 CPGC 的成骨率似乎在 4 周和 8 周之间增加。这表明 CPGC 的成骨率最初较慢,但在特定时间增加,随着时间的推移可能具有更大的骨形成能力。CPGC 的吸收速率大于 BCP。在本研究范围内,CPGC 表现出良好的空间维持能力和骨诱导作用,表明其可成功用于提高骨形成能力。

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