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通过重塑氧化还原平衡实现植入物相关感染的自我稳态免疫调节策略

Self-Homeostasis Immunoregulatory Strategy for Implant-Related Infections through Remodeling Redox Balance.

作者信息

Xu Dongdong, Zhu Wanbo, Ding Cheng, Mei Jiawei, Zhou Jun, Cheng Tao, Guo Geyong, Zhang Xianlong

机构信息

Department of Orthopedics, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai Jiao Tong University, Shanghai 200233, People's Republic of China.

Department of Orthopedics, The First Affiliated Hospital of USTC, University of Science and Technology of China, Hefei, Anhui 230001, People's Republic of China.

出版信息

ACS Nano. 2023 Mar 14;17(5):4574-4590. doi: 10.1021/acsnano.2c10660. Epub 2023 Feb 22.

Abstract

Implant-related infections (IRIs) are catastrophic complications after orthopedic surgery. Excess reactive oxygen species (ROS) accumulated in IRIs create a redox-imbalanced microenvironment around the implant, which severely limits the curing of IRIs by inducing biofilm formation and immune disorders. However, current therapeutic strategies commonly eliminate infection utilizing the explosive generation of ROS, which exacerbates the redox imbalance, aggravating immune disorders and promoting infection chronicity. Herein, a self-homeostasis immunoregulatory strategy based on a luteolin (Lut)-loaded copper (Cu)-doped hollow mesoporous organosilica nanoparticle system (Lut@Cu-HN) is designed to cure IRIs by remodeling the redox balance. In the acidic infection environment, Lut@Cu-HN is continuously degraded to release Lut and Cu. As both an antibacterial and immunomodulatory agent, Cu kills bacteria directly and promotes macrophage pro-inflammatory phenotype polarization to activate the antibacterial immune response. Simultaneously, Lut scavenges excessive ROS to prevent the Cu-exacerbated redox imbalance from impairing macrophage activity and function, thus reducing Cu immunotoxicity. The synergistic effect of Lut and Cu confers excellent antibacterial and immunomodulatory properties to Lut@Cu-HN. As demonstrated and , Lut@Cu-HN self-regulates immune homeostasis through redox balance remodeling, ultimately facilitating IRI eradication and tissue regeneration.

摘要

植入物相关感染(IRI)是骨科手术后的灾难性并发症。IRI中积累的过量活性氧(ROS)在植入物周围形成氧化还原失衡的微环境,通过诱导生物膜形成和免疫紊乱严重限制了IRI的治愈。然而,目前的治疗策略通常利用ROS的爆发性产生来消除感染,这加剧了氧化还原失衡,加重免疫紊乱并促进感染慢性化。在此,基于负载木犀草素(Lut)的铜(Cu)掺杂中空介孔有机硅纳米颗粒系统(Lut@Cu-HN)设计了一种自我稳态免疫调节策略,通过重塑氧化还原平衡来治愈IRI。在酸性感染环境中,Lut@Cu-HN持续降解以释放Lut和Cu。作为抗菌和免疫调节剂,Cu直接杀死细菌并促进巨噬细胞促炎表型极化以激活抗菌免疫反应。同时,Lut清除过量的ROS以防止Cu加剧的氧化还原失衡损害巨噬细胞活性和功能,从而降低Cu的免疫毒性。Lut和Cu的协同作用赋予Lut@Cu-HN优异的抗菌和免疫调节特性。如图 所示,Lut@Cu-HN通过氧化还原平衡重塑自我调节免疫稳态,最终促进IRI的根除和组织再生。

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