Wu Yipeng, Shi Xiangwen, Wang Jianjun, Li Yang, Wu Jiang, Jia Daqi, Bai Yan, Wu Xiaopei, Xu Yongqing
Graduate School, Kunming Medical University, Kunming, China.
Laboratory of Yunnan Traumatology and Orthopedics Clinical Medical Center, Yunnan Orthopedics and Sports Rehabilitation Clinical Medicine Research Center, Department of Orthopedic Surgery, 920th Hospital of Joint Logistics Support Force, Kunming, China.
Front Bioeng Biotechnol. 2023 Mar 16;11:1142264. doi: 10.3389/fbioe.2023.1142264. eCollection 2023.
The high concentration of antibacterial metal ions may exhibit unavoidable toxicity to cells and normal tissues. The application of antibacterial metal ions to activate the immune response and induce macrophages to attack and phagocytose bacteria is a new antimicrobial strategy. Herein, 3D-printed Ti-6Al-4V implants modified by copper, and strontium ions combined with natural polymers were designed to treat implant-related infections and osseointegration disorders. The polymer-modified scaffolds rapidly released a large amount of copper and strontium ions. During the release process, copper ions were employed to promote the polarization of M1 macrophages, thus inducing a proinflammatory immune response to inhibit infection and achieve the immune antibacterial activity. Meanwhile, copper and strontium ions promoted the secretion of bone-promoting factors by macrophages, induced osteogenesis and showed immunomodulatory osteogenesis. This study proposed immunomodulatory strategies based on the immunological characteristics of target diseases and provided ideas for the design and synthesis of new immunoregulatory biomaterials.
高浓度的抗菌金属离子可能会对细胞和正常组织表现出不可避免的毒性。应用抗菌金属离子激活免疫反应并诱导巨噬细胞攻击和吞噬细菌是一种新的抗菌策略。在此,设计了经铜和锶离子修饰并与天然聚合物结合的3D打印Ti-6Al-4V植入物,用于治疗植入物相关感染和骨整合障碍。聚合物修饰的支架迅速释放大量的铜和锶离子。在释放过程中,铜离子用于促进M1巨噬细胞的极化,从而诱导促炎免疫反应以抑制感染并实现免疫抗菌活性。同时,铜和锶离子促进巨噬细胞分泌促骨因子,诱导成骨并表现出免疫调节性成骨作用。本研究基于靶疾病的免疫学特征提出了免疫调节策略,并为新型免疫调节生物材料的设计与合成提供了思路。