State Key Laboratory of Military Stomatology, Department of Prosthodontics, School of Stomatology, The Fourth Military Medical University, Xi'an, 710032, China.
National Clinical Research Center for Oral Diseases, Department of Prosthodontics, School of Stomatology, The Fourth Military Medical University, Xi'an, 710032, China.
Sci Rep. 2017 Jul 26;7(1):6508. doi: 10.1038/s41598-017-06867-9.
Osseointegration is the key to implant stability and occlusal support. Biomechanical response and remodeling of peri-implant bone occurs under impact loading. Sclerostin participates in bone formation and resorption through Wnt and RANKL pathways. However the mechanism of microdamage and expression of sclerostin in peri-implant bone under impact load is still unclear. In present study, specific impact forces were applied to the implants with favorable osseointegration in rabbits. The microdamage of peri-implant bone and the expression of sclerostin, β-catenin and RANKL during the process of bone damage and remodeling were investigated by micro-CT, histology, immunofluorescence and RT-qPCR analysis. Interface separation and trabecular fracture were found histologically, which were consistent with micro-CT analyses. Throughout remodeling, bone resorption was observed during the first 14 days after impact, and osseointegration and normal trabecular structure were found by 28 d. The expression of sclerostin and RANKL increased after impact and reached a maximum by 14 d, then decreased gradually to normal levels by 28 d. And β-catenin expression was opposite. Results indicated that sclerostin may involve in the peri-implant bone damage caused by impact and remodeling through Wnt/β-catenin and RANKL/RANK pathways. It will provide a new insight in the diagnosis and treatment for patients suffering impact.
骨整合是种植体稳定性和咬合支持的关键。在冲击载荷下,种植体周围骨发生生物力学响应和重塑。骨硬化蛋白通过 Wnt 和 RANKL 途径参与骨形成和吸收。然而,在冲击载荷下,种植体周围骨的微损伤和骨硬化蛋白的表达机制尚不清楚。在本研究中,在具有良好骨整合的兔子中应用特定的冲击力于植入物。通过微 CT、组织学、免疫荧光和 RT-qPCR 分析研究了种植体周围骨的微损伤以及骨损伤和重塑过程中骨硬化蛋白、β-连环蛋白和 RANKL 的表达。组织学上发现了界面分离和小梁骨折,与微 CT 分析一致。在整个重塑过程中,在冲击后 14 天内观察到骨吸收,在 28 天时发现骨整合和正常小梁结构。冲击后骨硬化蛋白和 RANKL 的表达增加,在 14 天达到最大值,然后逐渐降至正常水平,28 天。β-连环蛋白的表达则相反。结果表明,骨硬化蛋白可能通过 Wnt/β-连环蛋白和 RANKL/RANK 途径参与冲击引起的种植体周围骨损伤和重塑。这将为受冲击影响的患者的诊断和治疗提供新的见解。