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工程化光化学治疗纳米复合材料对多孔装置中的细菌感染具有有效的抗生物膜和杀菌活性。

Engineered photo-chemical therapeutic nanocomposites provide effective antibiofilm and microbicidal activities against bacterial infections in porous devices.

作者信息

Lee Yu-Hsiang, Chiu Chen-Chih, Chang Chin-Yuan

机构信息

Department of Biomedical Sciences and Engineering, National Central University, Taoyuan City, Taiwan, Republic of China.

出版信息

Biomater Sci. 2021 Mar 10;9(5):1739-1753. doi: 10.1039/d0bm01814g.

Abstract

Today, prosthetic joint infection (PJI) is still a relatively rare but devastating complication following total hip and/or knee arthroplasty. The treatment of PJI is difficult due to a number of obstacles, such as microbial drug resistance, biofilm protection, and insufficient immune activity, which dramatically diminish the cure rate of PJI to <50%. To efficiently eradicate the bacteria hiding in the implant, photo-chemical joint antibacterial therapeutics based on indocyanine green (ICG) and rifampicin (RIF) co-loaded PLGA nanoparticles (IRPNPs) were developed in this study. The IRPNPs were first characterized as a spherical nanostructure with a size of 266 ± 18.2 nm and a surface charge of -28 ± 1.6 mV. In comparison with freely dissolved ICG, the IRPNPs may confer enhanced thermal stability to the encapsulated ICG and are able to provide a comparable hyperthermic effect and increased production of singlet oxygen under 808 nm near infrared (NIR) exposure with an intensity of 6 W cm-2. Based on the spectrophotometric analysis, the IRPNPs with ≥20-/3.52 μM ICG/RIF were able to provide remarkable antibiofilm and antimicrobial effects against bacteria in a porous silicon bead upon NIR exposure in vitro. Through the analysis of the microbial population index in an animal study, ≥70% Staphylococcus capitis subsp. urealyticus grown in a porous silicon bead in vivo can be successfully eliminated without organ damage or inflammatory lesions around the implant by using IRPNPs + NIR irradiation every 72 h for 9 days. The resulting bactericidal efficacy was approximately three-fold higher than that resulting from using an equal amount of free RIF alone. Taken together, we anticipate that IRPNP-mediated photochemotherapy can serve as a feasible antibacterial approach for PJI treatment in the clinic.

摘要

如今,人工关节感染(PJI)仍是全髋关节和/或膝关节置换术后一种相对罕见但极具破坏性的并发症。由于微生物耐药性、生物膜保护和免疫活性不足等诸多障碍,PJI的治疗颇具难度,这些障碍显著降低了PJI的治愈率,使其低于50%。为有效根除隐藏在植入物中的细菌,本研究开发了基于负载吲哚菁绿(ICG)和利福平(RIF)的聚乳酸-羟基乙酸共聚物纳米颗粒(IRPNPs)的光化学关节抗菌疗法。IRPNPs首先被表征为球形纳米结构,尺寸为266±18.2 nm,表面电荷为-28±1.6 mV。与自由溶解的ICG相比,IRPNPs可赋予封装的ICG更高的热稳定性,并且在强度为6 W/cm²的808 nm近红外(NIR)照射下,能够提供相当的热疗效果并增加单线态氧的产生。基于分光光度分析,≥20/3.52 μM ICG/RIF的IRPNPs在体外近红外照射下,能够对多孔硅珠中的细菌提供显著的抗生物膜和抗菌作用。通过动物研究中的微生物种群指数分析,每72小时使用IRPNPs + NIR照射9天,可成功消除体内在多孔硅珠中生长的≥70%的解脲脲原体亚种,且不会对植入物周围造成器官损伤或炎性病变。由此产生的杀菌效果比单独使用等量游离RIF高出约三倍。综上所述,我们预计IRPNP介导的光化学疗法可作为临床上治疗PJI的一种可行抗菌方法。

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