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辛伐他汀复合Bio-Oss修复兔下颌骨缺损 被引量:2

Simvastatin compounded with Bio-Oss repairs rabbit mandibular defects
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摘要 背景:研究发现辛伐他汀具有促进新骨形成的作用,但其成骨机制及成骨效果目前仍然存在争议。目的:对比观察Bio-Oss/辛伐他汀复合材料与单纯Bio-Oss修复材料修复兔下颌骨骨缺损区的成骨效果。方法:12只新西兰大白兔下颌骨双侧制备缺损,随机将一侧采用辛伐他汀复合Bio-Oss修复缺损区;另一侧采用单纯Bio-Oss修复缺损区。两组均覆盖Bio-Gide胶原膜。植骨后4,8,12周分别处死各组兔子4只,通过大体观察,X射线及口腔锥形束CT影像学观察,组织学切片观察,定性定量对比分析植骨区牙槽骨形成情况。结果与结论:植骨后4,8,12周新骨形成逐渐增多,随着高阻射的Bio-Oss骨粉逐渐降解,在各时间点密度值测量结果辛伐他汀复合Bio-Oss组均显著低于单纯Bio-Oss组(P<0.05)。新生骨百分比测量结果辛伐他汀复合Bio-Oss均显著高于单纯Bio-Oss组(P<0.05)。提示辛伐他汀具有促进Bio-Oss骨粉吸收的效果,在骨缺损修复中具有促进新骨生成的作用。 BACKGROUND: Studies have shown that simvastatin can promote bone formation, but there is still controversial on the osteogenic mechanism and osteogenic effect. OBJECTIVE: To explore the osteogenesis effect of the composite of simvastatin and Bio-Oss versus simple Bio-Oss material on the repair of rabbit mandibular defects. METHODS: Twelve New Zealand white rabbits were selected to establish alveolar bilateral mandibular defects models. The composite of simvastatin and Bio-Oss was implanted randomly in one side of defect region; Bio-Oss was simply implanted in the other side of defect region. Both sides were covered with Bio-Gide bilayer collagen membrane. Four rabbits in each group were sacrificed at 4, 8 and 12 weeks after implantation, and the general observation X-ray film, oral cone-beam CT imaging observation and histopathologic study and quantitatively were conducted to quantitatively and qualitatively comparative analyze the alveolar bone formation in the graft region. RESULTS AND CONCLUSION: At 4, 8 and 12 weeks after implantation, new bone formation was found and increased with time prolonging. With the gradual degeneration of high resistance fire Bio-Oss bone meal, the bone mineral density at different time points of the simvastatin composite Bio-Oss group was lower than that of the simple Bio-Oss group(P 0.05). The percentage of bone formation in the simvastatin composite Bio-Oss group was significantly higher than that in the simple Bio-Oss group(P 0.05). Simvastatin could accelerate Bio-Oss degradation and promote new bone formation in bone defects repairing.
出处 《中国组织工程研究》 CAS CSCD 2013年第48期8374-8380,共7页 Chinese Journal of Tissue Engineering Research
基金 甘肃省自然科学研究基金资助项目(1208RJZA209)~~
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