Zhang Jiaxin, Bai Haotian, Bai Miao, Wang Xiaonan, Li ZuHao, Xue Haowen, Wang Jincheng, Cui Yutao, Wang Hui, Wang Yanbing, Zhou Rongqi, Zhu Xiujie, Xu Mingwei, Zhao Xin, Liu He
Orthopedic Institute of Jilin Province, Orthopedic Medical Center, The Second Hospital of Jilin University, Changchun 130041, PR China.
Department of Ocular Fundus Disease, Ophthalmology Center, The Second Hospital of Jilin University, Changchun 130041, PR China.
Mater Today Bio. 2023 Jul 22;22:100737. doi: 10.1016/j.mtbio.2023.100737. eCollection 2023 Oct.
Bisphosphonates (BPs), the stable analogs of pyrophosphate, are well-known inhibitors of osteoclastogenesis to prevent osteoporotic bone loss and improve implant osseointegration in patients suffering from osteoporosis. Compared to systemic administration, BPs-incorporated coatings enable the direct delivery of BPs to the local area, which will precisely enhance osseointegration and bone repair without the systemic side effects. However, an elaborate and comprehensive review of BP coatings of implants is lacking. Herein, the cellular level (e.g., osteoclasts, osteocytes, osteoblasts, osteoclast precursors, and bone mesenchymal stem cells) and molecular biological regulatory mechanism of BPs in regulating bone homeostasis are overviewed systematically. Moreover, the currently available methods (e.g., chemical reaction, porous carriers, and organic material films) of BP coatings construction are outlined and summarized in detail. As one of the key directions, the latest advances of BP-coated implants to enhance bone repair and osseointegration in basic experiments and clinical trials are presented and critically evaluated. Finally, the challenges and prospects of BP coatings are also purposed, and it will open a new chapter in clinical translation for BP-coated implants.
双膦酸盐(BPs)是焦磷酸盐的稳定类似物,是众所周知的破骨细胞生成抑制剂,可预防骨质疏松症患者的骨质流失并改善种植体骨整合。与全身给药相比,含BPs的涂层能够将BPs直接递送至局部区域,这将精确增强骨整合和骨修复,而无全身副作用。然而,目前缺乏对植入物BP涂层的详尽且全面的综述。在此,系统概述了BPs在调节骨稳态方面的细胞水平(如破骨细胞、骨细胞、成骨细胞、破骨细胞前体和骨间充质干细胞)及分子生物学调控机制。此外,详细概述并总结了目前用于构建BP涂层的方法(如化学反应、多孔载体和有机材料膜)。作为关键方向之一,介绍并批判性评估了BP涂层植入物在基础实验和临床试验中增强骨修复和骨整合的最新进展。最后,还提出了BP涂层面临的挑战与前景,这将为BP涂层植入物的临床转化开启新篇章。