摘要
目的观察载bmp7基因的腺相关病毒(rAAV-BMP7)复合Bio-Oss的基因治疗方法对种植体周骨缺损修复的影响。方法体外构建载bmp7基因的腺相关病毒,并与Bio-Oss复合。6只雄性新西兰大白兔双侧胫骨植入种植体,并制备直径8mm、深4mm的种植体周骨缺损,A组骨缺损区填入rAAV-BMP7/Bio-Oss复合物;B组仅填入Bio-Oss;C组不充填材料。术后4、8周分期处死动物,取样进行组织学观察和形态学分析。结果A、B组骨缺损处均有新骨形成,A组较B组新骨形成更早、新生骨量更多、骨成熟程度更高(P<0.05)。结论rAAV-BMP7复合Bio-Oss较单纯植入Bio-Oss能更快、更有效地促进种植体周围骨缺损形成新骨,新骨量大且成熟度高,并能形成理想的种植体-骨结合界面。
Objective To evaluate in vivo gene delivery of Bio-Oss coated with adeno-assoeiated virus-mediated human bone morphogenetic protein 7 (rAAV-BMP7/Bio-Oss) for bone regeneration around dental implants. Methods In vitro rAAV-BMP7 were constructed and compounded with Bio-Oss. In 6 male New Zealand rabbits, two hydroxya- patite (HA) coated titanium dental implants were placed respectively to each animal in the bilateral tibia metaphysis. Before implantation, a standardized gap (8 mm in width, 4 mm in depth) was created between the implant surface and the surrounding bone walls. Rabbits were randomly divided into three groups (group A, B, C). Gaps of group A were filled with rAAV-BMP7/Bio-Oss (n=4), gaps of group B were filled with Bio-Oss alone (n=4), and gaps of group C were filled with nothing(n=4). The rabbits were sacrificed at 4 and 8 weeks respectively, and the selerous tissue slices obtained, then histology and histomorphometric analysis were conducted. Results Histological and histomorphometric analysis revealed an enlarged bone-forming area in the bone defects of group A and B at 4 and 8 weeks after implantation. Greater bone-implant contact was achieved with rAAV-BMP7/Bio-Oss than with Bio-Oss alone and this difference was statistically significant (,P〈0.05). Conclusion rAAV-BMP7/Bio-Oss can induce a stronger peri-implant bone reaction and larger new bone formation than Bio-Oss alone in the treatment of bone defects adjacent to titanium dental implants.
出处
《华西口腔医学杂志》
CAS
CSCD
北大核心
2008年第4期421-424,429,共5页
West China Journal of Stomatology
基金
国家自然科学基金资助项目(30572065/C03031103)
教育部留学回国人员启动基金资助项目(教外司留[2004]527号)
关键词
骨形态发生蛋白7
基因治疗
骨再生
骨整合
bone morphogenetic protein 7
gene therapy
bone regeneration
osseointegration