Cheng Xin, Tian Wenzhi, Yang Jianhua, Wang Jiamian, Zhang Yang
Department of Stomatology, Shenzhen University General Hospital, Shenzhen University Clinical Medical Academy, 1098 Xueyuan Road, Shenzhen 518055, Guangdong Province, China.
Jilin University, Jilin Province Key Lab Tooth Dev & Bone Remodeling, School and Hospital of Stomatology, Department of Oral Pathology, Changchun 130041, Jilin Province, China.
Mater Today Bio. 2024 Apr 3;26:101043. doi: 10.1016/j.mtbio.2024.101043. eCollection 2024 Jun.
Extensive research has delved into the multifaceted roles of osteoclasts beyond their traditional function in bone resorption in recent years, uncovering their significant influence on bone formation. This shift in understanding has spurred investigations into engineering strategies aimed at leveraging osteoclasts to not only inhibit bone resorption but also facilitate bone regeneration. This review seeks to comprehensively examine the mechanisms by which osteoclasts impact bone metabolism. Additionally, it explores various engineering methodologies, including the modification of bioactive material properties, localized drug delivery, and the introduction of exogenous cells, assessing their potential and mechanisms in aiding bone repair by targeting osteoclasts. Finally, the review proposes current limitations and future routes for manipulating osteoclasts through biological and material cues to facilitate bone repair.
近年来,广泛的研究深入探讨了破骨细胞除了在骨吸收中的传统功能之外的多方面作用,揭示了它们对骨形成的重大影响。这种认识上的转变促使人们对工程策略进行研究,旨在利用破骨细胞不仅抑制骨吸收,还促进骨再生。本综述旨在全面研究破骨细胞影响骨代谢的机制。此外,它还探讨了各种工程方法,包括生物活性材料特性的改性、局部药物递送和外源细胞的引入,评估它们通过靶向破骨细胞辅助骨修复的潜力和机制。最后,该综述提出了当前通过生物和材料线索操纵破骨细胞以促进骨修复的局限性和未来途径。