PRES UNAM, INSERM UMR 791, LIOAD, BP 84215, Nantes, France.
Biomaterials. 2010 Oct;31(30):7776-84. doi: 10.1016/j.biomaterials.2010.06.047.
Resorbable calcium phosphate (CaP) biomaterials have demonstrated considerable efficacy in bone reconstructive surgery. Furthermore, bisphosphonates (BPs) are well known anti-resorptive agents largely used in clinical treatments for osteoporosis. An injectable BP-combined CaP matrix has been developed in order to biologically reinforce osteoporotic bone by increasing the bone fraction and improving bone micro-architecture. Our previous in vitro studies have shown that CaP is effective for loading and releasing BPs at doses that can inhibit excessive bone resorption without affecting osteoblasts. In vivo studies in relevant animal models are necessary to explore the effect of our injectable BP-combined biomaterial on femur bone structure by performing three-dimensional microtomography analysis, histological studies and SEM observations. Firstly, in rat model, our BP-combined CaP matrix significantly improved the bone micro-architecture as compared to CaP alone. The implantation of the BP-loaded biomaterial within proximal femurs of osteoporotic ewes led to a significant increase in relative bone content and an improvement of its micro-architecture. These modifications were confirmed by histological and SEM observations, which revealed CaP granule resorption and new bone trabeculae formation. This approach could be considered in the future for preventing osteoporotic fractures that are preferentially localized in the proximal femur, vertebral bodies or wrist.
可吸收磷酸钙(CaP)生物材料在骨重建外科中已显示出相当大的疗效。此外,双膦酸盐(BPs)是众所周知的抗吸收剂,在骨质疏松症的临床治疗中广泛应用。为了通过增加骨量和改善骨微结构来增强骨质疏松性骨骼,已经开发出了一种可注射的 BP 结合 CaP 基质。我们之前的体外研究表明,CaP 可以有效地负载和释放 BPs,其剂量可以抑制过度的骨吸收,而不会影响成骨细胞。在相关动物模型中的体内研究对于通过三维微断层扫描分析、组织学研究和 SEM 观察来探讨我们的可注射 BP 结合生物材料对股骨骨结构的影响是必要的。首先,在大鼠模型中,与单独的 CaP 相比,我们的 BP 结合 CaP 基质显著改善了骨微结构。将负载 BP 的生物材料植入骨质疏松性绵羊的股骨近端,导致相对骨含量显著增加,并改善了其微结构。组织学和 SEM 观察证实了这些改变,揭示了 CaP 颗粒的吸收和新的骨小梁形成。这种方法可以在未来用于预防优先发生在股骨近端、椎体或手腕的骨质疏松性骨折。