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首页> 外文期刊>ACS applied materials & interfaces >Multifunctional Magnetic Copper Ferrite Nanoparticles as Fenton-like Reaction and Near-Infrared Photothermal Agents for Synergetic Antibacterial Therapy
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Multifunctional Magnetic Copper Ferrite Nanoparticles as Fenton-like Reaction and Near-Infrared Photothermal Agents for Synergetic Antibacterial Therapy

机译:多功能磁性铜铁氧体纳米粒子作为芬顿反应和近红外光热试剂用于协同抗菌治疗

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Synergistic therapeutic strategies for bacterial infection have attracted extensive attentions owing to their enhanced therapeutic effects and less adverse effects compared with monotherapy. Herein, we report a novel synergistic antibacterial platform that integrates the nanocatalytic antibacterial therapy and photothermal therapy (PTT) by hemoglobin-functionalized copper ferrite nanoparticles (Hb-CFNPs). In the presence of a low concentration of hydrogen peroxide (H2O2), the excellent Fenton and Fenton-like reaction activity of Hb-CFNPs can effectively catalyze the decomposition of H2O2 to produce hydroxyl radicals (center dot OH), rendering an increase in the permeability of the bacterial cell membrane and the sensitivity to heat. With the assistance of NIR irradiation, hyperthermia generated by Hb-CFNPs can induce the death of the damaged bacteria. Additionally, owing to the outstanding magnetic property of Hb-CFNPs, it can improve the photothermal efficiency by about 20 times via magnetic enrichment, which facilitates to realize excellent bactericidal efficacy at a very low experimental dose (20 mu g/mL). In vitro antibacterial experiment shows that this synergistic antibacterial strategy has a broad-spectrum antibacterial property against Gram-negative Escherichia coli (E. coli, 100%) and Gram-positive Staphylococcus aureus (S. aureus, 96.4%). More importantly, in vivo S. aureus-infected abscess treatment studies indicate that Hb-CFNPs can serve as an antibacterial candidate with negligible toxicity to realize synergistic treatment of bacterial infections through catalytic and photothermal effects. Accordingly, this study proposes a novel, high-efficiency, and multifunctional therapeutic system for the treatment of bacterial infection, which will open up a new avenue for the design of synergistic antibacterial systems in the future.
机译:由于与单一疗法相比,由于其增强的治疗效果和不利影响较小,因此对细菌感染的协同治疗策略引起了广泛的注意。在此,我们报告了一种新型协同抗菌平台,其通过血红蛋白官能化铜铁氧体纳米粒子(HB-CFNP)整合纳米催化抗菌治疗和光热疗(PTT)。在存在低浓度的过氧化氢(H 2 O 2)的情况下,Hb-Cfnps的优异芬顿和芬顿状反应活性可以有效地催化H2O2的分解,以产生羟基自由基(中心点OH),使渗透性增加细菌细胞膜和热量的敏感性。在NIR辐照的帮助下,HB-CFNPS产生的热疗可以诱导受损细菌的死亡。另外,由于Hb-CFNP的出色磁性,它可以通过磁性富集提高光热效率约20次,这有助于以非常低的实验剂量(20μg/ ml)实现优异的杀菌功效。体外抗菌实验表明,这种协同抗菌策略具有针对革兰氏阴性大肠杆菌(大肠杆菌,100%)和革兰氏阳性金黄色葡萄球菌(Aureus,96.4%)的广谱抗菌性。更重要的是,在体内AUPES感染的脓肿治疗研究表明,HB-CFNP可以用作通过催化和光热效应实现细菌感染的协同处理的抗菌候选者。因此,本研究提出了一种新的,高效和多功能治疗系统,用于治疗细菌感染,这将在未来开辟了一种新的协同抗菌系统设计的新途径。

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