Department of Orthopedics, The First Affiliated Hospital of Wannan Medical College, Wuhu 241001, Anhui, China.
Department of Orthopedics, Renmin Hospital of Zhijiang, Yichang 443200, Hubei, China.
Colloids Surf B Biointerfaces. 2024 Jan;233:113643. doi: 10.1016/j.colsurfb.2023.113643. Epub 2023 Nov 10.
Due to the dynamic imbalance between osteogenesis and osteoclasis and the abnormal inflammatory microenvironment in situ, osteoporosis hampers the early osseointegration between implants and bones. To improve osseointegration with the osteoporosis, we first coated the titanium implants (Ti) with polydopamine (PDA) coating (Ti-PDA), followed by modification with strontium (Sr) to prepare the Ti-PDA-Sr implants. An osteoporotic rat model with femoral bone defect was verified to estimate the osseointegration of the implants. The Ti-PDA-Sr implants exhibited good biocompatibility with continuous release of Sr ions for up to 21 days. Ti-PDA-Sr implants promoted the osteogenesis of BMSCs and the polarization of BMMs to M2 phenotype compared to that of Ti and Ti-PDA implants, revealing the double-regulated effects in bone induction and immune regulation. According to the Micro-CT and histopathology results, Ti-PDA-Sr implants exhibited the most stable osseointegration between bone tissues and implants. According to the immunohistochemistry results, the Ti-PDA-Sr implants differentiated the BMMs to M2 phenotype, alleviating the abnormal inflammation in osteoporosis and preventing the consistent bone destruction between the implants and bone tissues. This study provides a practical and effective strategy in preparing bi-functional implants that can promote osseointegration with osteoporosis.
由于成骨和破骨之间的动态失衡以及原位异常炎症微环境,骨质疏松症会阻碍植入物和骨骼之间的早期骨整合。为了改善骨质疏松症的骨整合,我们首先用聚多巴胺(PDA)涂层(Ti-PDA)涂覆钛植入物(Ti),然后用锶(Sr)进行修饰,制备 Ti-PDA-Sr 植入物。通过股骨骨缺损的骨质疏松大鼠模型来评估植入物的骨整合。Ti-PDA-Sr 植入物具有良好的生物相容性,Sr 离子持续释放长达 21 天。与 Ti 和 Ti-PDA 植入物相比,Ti-PDA-Sr 植入物促进了 BMSCs 的成骨和 BMMs 向 M2 表型的极化,显示出在骨诱导和免疫调节方面的双重调节作用。根据 Micro-CT 和组织病理学结果,Ti-PDA-Sr 植入物在骨组织和植入物之间表现出最稳定的骨整合。根据免疫组织化学结果,Ti-PDA-Sr 植入物将 BMMs 分化为 M2 表型,减轻了骨质疏松症中的异常炎症,防止了植入物和骨组织之间的持续骨破坏。本研究为制备具有促进骨质疏松症骨整合功能的双功能植入物提供了一种实用有效的策略。