Department of Prosthodontics, The Second Affiliated Hospital of Jinzhou Medical University, Jinzhou, People's Republic of China.
Biomed Mater. 2018 Aug 30;13(6):065008. doi: 10.1088/1748-605X/aadb47.
Mineralized collagen has been used clinically as a bone grafting material in oral applications. We have developed a mineralized collagen/Mg-Ca alloy combined scaffold to overcome the mechanical limitations of mineralized collagen. This study discusses the cytocompatibility of the mineralized collage/Mg-Ca alloy combined scaffold in vitro and the bone regeneration following tooth extraction in vivo. Using an indirect proliferation assay adapted from ISO 10993-5, it was found that mineralized collagen/Mg-Ca alloy combined scaffold enhanced cell proliferation and migration in addition to MC3T3-E1 cells not showing a cytotoxicity response in vitro. Finally, the ability of the combined scaffold to enhance osteogenesis was assessed in a canine socket preservation model. Cone beam CT, x-ray microscopes and biomechanical analysis showed the mineralized collagen/Mg-Ca alloy combined scaffold to be more effective at reducing the absorption of alveolar ridge and preserving the socket site than mineralized collagen alone. The combined scaffolds can promote bone regeneration with good biocompatibility, providing a new concept of the combined application of mineralized collagen and magnesium alloy.
矿化胶原已被临床用作口腔应用中的骨移植材料。我们开发了一种矿化胶原/Mg-Ca 合金复合支架,以克服矿化胶原的机械限制。本研究讨论了体外矿化胶原/Mg-Ca 合金复合支架的细胞相容性以及体内拔牙后骨再生的情况。通过采用源自 ISO 10993-5 的间接增殖测定法,发现矿化胶原/Mg-Ca 合金复合支架除了促进 MC3T3-E1 细胞的增殖和迁移外,细胞体外还没有表现出细胞毒性反应。最后,在犬牙槽窝保存模型中评估了复合支架增强成骨的能力。锥形束 CT、射线显微镜和生物力学分析表明,矿化胶原/Mg-Ca 合金复合支架在减少牙槽嵴吸收和保持牙槽窝方面比单纯矿化胶原更有效。复合支架具有良好的生物相容性,可促进骨再生,为矿化胶原和镁合金联合应用提供了新的概念。