Department of Orthopedics, The Second Hospital of Jilin University, Changchun, 130041, P. R. China.
Department of Orthopedics, China-Japan Union Hospital of Jilin University, Changchun, 130033, P. R. China.
Adv Healthc Mater. 2019 Dec;8(23):e1901073. doi: 10.1002/adhm.201901073. Epub 2019 Nov 6.
The local sustained release of bioactive substances are attracting increasing attention in bone tissue engineering, which is beneficial to bone tissue formation and helps to improve the bone ingrowth ability of a scaffold. Bisphosphonates (BPs), as a representative kind of osteoclast inhibitors, are proven to possess excellent osteogenic induction capability. Accordingly, various physical and chemical strategies are developed to functionalize bone tissue scaffolds with BPs to achieve controlled release profiles. Compared with traditional treatment modalities, local release of BPs from these composite scaffolds will contribute to continuous bone integration without the risk of many complications. This review explores the molecular mechanisms of BPs on bone metabolism and analyzes the appropriate concentrations of BPs that promote bone regeneration. The advanced BP loading strategies, implant modification technologies, and BP-loaded composite scaffolds based on different matrices are summarized. Finally, the latest advances and the future development of BP-modified scaffolds for enhanced bone regeneration are discussed. This article provides leading-edge design strategies of the BP-functionalized bone engineering scaffolds for improved bone repairability.
局部持续释放生物活性物质在骨组织工程中越来越受到关注,这有利于骨组织的形成,并有助于提高支架的骨向内生长能力。双膦酸盐(BPs)作为一种代表性的破骨细胞抑制剂,已被证明具有优异的成骨诱导能力。因此,开发了各种物理和化学策略,使骨组织支架具有 BPs 的功能化,以实现控制释放曲线。与传统的治疗方式相比,这些复合支架中 BPs 的局部释放将有助于持续的骨整合,而没有许多并发症的风险。本综述探讨了 BPs 对骨代谢的分子机制,并分析了促进骨再生的 BPs 适当浓度。总结了先进的 BP 加载策略、植入物改性技术以及基于不同基质的 BP 负载复合支架。最后,讨论了增强骨再生的 BP 改性支架的最新进展和未来发展。本文为改善骨修复能力的 BP 功能化骨工程支架提供了前沿的设计策略。