Xiong Long, Zeng Jianhua, Yao Aihua, Tu Qiquan, Li Jingtang, Yan Liang, Tang Zhiming
Department of Osteology, People's Hospital of Jiangxi Province, Nanchang, Jiangxi, People's Republic of China.
School of Materials Science and Engineering, Tongji University, Shanghai, People's Republic of China.
Int J Nanomedicine. 2015 Jan 12;10:517-26. doi: 10.2147/IJN.S74677. eCollection 2015.
The regeneration of large bone defects is an osteoinductive, osteoconductive, and osteogenic process that often requires a bone graft for support. Limitations associated with naturally autogenic or allogenic bone grafts have demonstrated the need for synthetic substitutes. The present study investigates the feasibility of using novel hollow hydroxyapatite microspheres as an osteoconductive matrix and a carrier for controlled local delivery of bone morphogenetic protein 2 (BMP2), a potent osteogenic inducer of bone regeneration. Hollow hydroxyapatite microspheres (100±25 μm) with a core (60±18 μm) and a mesoporous shell (180±42 m(2)/g surface area) were prepared by a glass conversion technique and loaded with recombinant human BMP2 (1 μg/mg). There was a gentle burst release of BMP2 from microspheres into the surrounding phosphate-buffered saline in vitro within the initial 48 hours, and continued at a low rate for over 40 days. In comparison with hollow hydroxyapatite microspheres without BMP2 or soluble BMP2 without a carrier, BMP2-loaded hollow hydroxyapatite microspheres had a significantly enhanced capacity to reconstitute radial bone defects in rabbit, as shown by increased serum alkaline phosphatase; quick and complete new bone formation within 12 weeks; and great biomechanical flexural strength. These results indicate that BMP2-loaded hollow hydroxyapatite microspheres could be a potential new option for bone graft substitutes in bone regeneration.
大骨缺损的再生是一个骨诱导、骨传导和成骨的过程,通常需要骨移植来提供支持。与天然自体骨或异体骨移植相关的局限性表明需要合成替代物。本研究探讨了使用新型中空羟基磷灰石微球作为骨传导基质和骨形态发生蛋白2(BMP2,一种强大的骨再生成骨诱导剂)可控局部递送载体的可行性。通过玻璃转化技术制备了具有核心(60±18μm)和介孔壳(表面积为180±42 m²/g)的中空羟基磷灰石微球(100±25μm),并负载重组人BMP2(1μg/mg)。在最初的48小时内,BMP2从微球中缓慢释放到周围的磷酸盐缓冲盐水中,并在40多天内持续以低速率释放。与不含BMP2的中空羟基磷灰石微球或无载体的可溶性BMP2相比,负载BMP2的中空羟基磷灰石微球在兔体内重建桡骨缺损的能力显著增强,表现为血清碱性磷酸酶升高;在12周内快速完全形成新骨;以及具有很大的生物力学抗弯强度。这些结果表明,负载BMP2的中空羟基磷灰石微球可能是骨再生中骨移植替代物的一种潜在新选择。