Department of Orthopaedics, University Medical Centre Utrecht, Heidelberglaan 100, 3584 CX, Utrecht, The Netherlands.
Faculty of Veterinary Medicine, Utrecht University, Yalelaan 1, 3508 TD, Utrecht, The Netherlands.
Sci Rep. 2018 May 8;8(1):7269. doi: 10.1038/s41598-018-25564-9.
Interleukin 17 (IL-17) stimulates the osteogenic differentiation of progenitor cells in vitro through a synergy with bone morphogenetic protein (BMP)-2. This study investigates whether the diverse responses mediated by IL-17 in vivo also lead to enhanced BMP-2-induced bone formation. Since IL-17 is known to induce osteoclastogenesis, we studied the interactions between IL-17 and BMP-2 in ceramic scaffolds either or not carrying a coating with the bisphosphonate zoledronic acid (ZOL). Histological evaluation revealed that IL-17 alone did not induce any osteoclasts at day 10. On the other hand, BMP-2 clearly stimulated early tissue ingrowth and osteoclastogenesis. Both of these processes were blocked in presence of ZOL. IL-17 signaling restored early vascularized connective tissue formation and osteoclastogenesis induced by BMP-2 in ZOL-coated scaffolds. After 12 weeks, the bone volume induced by co-delivery of BMP-2 and IL-17 was doubled as compared to that induced by BMP-2 alone. We conclude that IL-17 has osteo-stimulatory effects through a synergy with bone-inductive BMP-2. Although local and single application of IL-17 does not mediate osteoclast formation, it could promote other processes involved in bone formation such as connective tissue ingrowth. The use of IL-17 may contribute to the development of improved bone graft substitutes.
白细胞介素 17 (IL-17) 通过与骨形态发生蛋白 (BMP)-2 的协同作用刺激祖细胞的成骨分化。本研究旨在探究体内由 IL-17 介导的不同反应是否也会导致 BMP-2 诱导的骨形成增强。由于已知 IL-17 可诱导破骨细胞形成,我们研究了 IL-17 和 BMP-2 在陶瓷支架中的相互作用,这些支架要么带有唑来膦酸 (ZOL) 涂层,要么没有。组织学评估显示,IL-17 单独在第 10 天不会诱导任何破骨细胞。另一方面,BMP-2 明显刺激早期组织内生长和破骨细胞形成。ZOL 的存在阻断了这两个过程。IL-17 信号通路恢复了 BMP-2 诱导的 ZOL 涂层支架中早期血管化结缔组织形成和破骨细胞形成。12 周后,与 BMP-2 和 IL-17 共同递送相比,BMP-2 单独诱导的骨体积增加了一倍。我们得出结论,IL-17 通过与骨诱导的 BMP-2 协同作用具有骨刺激作用。尽管局部和单独应用 IL-17 不会介导破骨细胞形成,但它可以促进与骨形成相关的其他过程,如结缔组织内生长。IL-17 的使用可能有助于开发改良的骨移植物替代品。