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用于植入物感染治疗中自催化调节和类细菌铜死亡的超声激活草药生物异质结

Ultrasound activated herbal bio-heterojunctions for self-catalytic regulation and bacterial cuproptosis-like death in the treatment of implant infection.

作者信息

Yue Yan, Li Shuoyuan, Su Qiang, Wan Xufeng, Li Qiaochu, Zhang Zhuang, Xu Hong, Zheng Fuyuan, Zhang Yangming, Tong Le, Cao Jian, Zhao Long, Chen Xiaoting, Li Qi, Zeng Yi, Wang Haoyang, Deng Yi, Zhou Zongke, Wang Duan

机构信息

Orthopedic Research Institute and Department of Orthopedics, West China Hospital, Sichuan University, Chengdu, 610041, China.

Department of Orthopedics, the First Affiliated Hospital, Chongqing Medical University, Chongqing, 400016, China.

出版信息

Signal Transduct Target Ther. 2025 Sep 19;10(1):303. doi: 10.1038/s41392-025-02388-4.

Abstract

Conventional antibiotic strategies often fail to consistently suppress escaping planktonic bacteria and even induce antibiotic resistance, allowing implant-associated infections (IAIs) to persist. In this study, we demonstrated an antibiotic-free coating engineered with an herbal bioheterojunction featuring a shell-in-shell structure where CuO forms the core, strontium (Sr) is loaded in the inner shell, and curcumin (Cur) is nucleated in situ at the outer heterointerface (CuO-Sr/Cur). Ultrasound-triggered reactive oxygen species (ROS) generation by the outer heterostructure (CuO/Cur), coupled with Cu(I)-induced cuproptosis-like bacterial death, achieved antibacterial rates of 99.56% against S. aureus and 99.43% against E. coli. When ultrasonication ceases, the released Cu(I) undergoes disproportionation reactions to form Cu(II), which can chelate with Cur to form Cu-Cur metal complexes. These complexes exhibit enhanced antioxidative properties through self-catalytic regulation, the scavenging of ROS, and the activation of anti-inflammatory M2 macrophage phenotype. Moreover, strontium release from the inner shell simultaneously suppressed osteoclast activity and promoted osteogenesis, resulting in trabecular number and thickness increases of 129.03% and 56.71%, respectively, compared with those in control group. Therefore, our work establishes a sequential treatment strategy for the antibacterial properties and osteointegration ability of IAIs.

摘要

传统的抗生素策略往往无法持续抑制逃逸的浮游细菌,甚至会诱导抗生素耐药性,导致植入物相关感染(IAIs)持续存在。在本研究中,我们展示了一种无抗生素涂层,该涂层采用具有壳中壳结构的草药生物异质结设计,其中氧化铜(CuO)形成核心,锶(Sr)负载在内壳中,姜黄素(Cur)在外层异质界面(CuO-Sr/Cur)原位成核。外层异质结构(CuO/Cur)通过超声触发产生活性氧(ROS),再加上Cu(I)诱导的类铜死亡细菌死亡,对金黄色葡萄球菌的抗菌率达到99.56%,对大肠杆菌的抗菌率达到99.43%。当超声停止时,释放的Cu(I)发生歧化反应形成Cu(II),Cu(II)可与Cur螯合形成Cu-Cur金属配合物。这些配合物通过自我催化调节、清除ROS和激活抗炎M2巨噬细胞表型,表现出增强的抗氧化性能。此外,内壳中锶的释放同时抑制了破骨细胞活性并促进了骨生成,与对照组相比,骨小梁数量和厚度分别增加了129.03%和56.71%。因此,我们的工作建立了一种针对IAIs抗菌性能和骨整合能力的序贯治疗策略。

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