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Light-enhanced sponge-like carbon nanozyme used for synergetic antibacterial therapy

机译:用于协同抗菌疗法的轻增强的海绵状碳纳齐齐

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摘要

Bacterial infection and the issue of antibiotic resistance have become one of the major public health problems worldwide. Thus, searching for new antibacterial agents is urgently required. Hydrogen peroxide, H2O2, as a traditional bactericide, is applied widely for medical treatments. However, the relatively high concentration of H2O2 used in a clinical setting usually inhibits wound healing and even damages normal tissues during disinfection. Here, we synthesized N-doped sponge-like carbon spheres (N-SCSs), which showed excellent mimicking activities for multiple enzymes, including peroxidase, oxidase, superoxide dismutase, and catalase. We then utilized the peroxidase-like activity of the N-SCSs to convert low-concentration H2O2 into radical oxygen species to resist bacteria. The data showed that the antibacterial performance of H2O2 against Gram-negative bacteria (Escherichia coli), Gram-positive bacteria (Staphylococcus aureus), and multidrug-resistant bacteria was improved through the peroxidase-like catalytic reaction of N-SCSs. Importantly, besides generating heat against bacteria, near-infrared laser exposure also promoted the peroxidase activity of N-SCSs, to further generate radical oxygen species to kill bacteria. In addition, this catalytic-photothermal antibacterial strategy demonstrated accelerated recovery of infected wounds in an animal model. Thus, our work provides a new synergetic anti-infection strategy, and further expands the application of carbon-based nanozymes in biomedicine.
机译:细菌感染和抗生素抗性问题已成为全球主要的公共卫生问题之一。因此,迫切需要寻找新的抗菌剂。作为一种传统的杀菌剂,过氧化氢,H 2 O 2广泛用于医疗治疗。然而,临床环境中使用的相对高浓度的H 2 O 2通常抑制伤口愈合,甚至在消毒过程中损害正常组织。这里,我们合成了N掺杂的海绵状碳球(N-SCS),其显示出多种酶的优异模拟活性,包括过氧化物酶,氧化酶,超氧化物歧化酶和过氧化氢酶。然后,我们利用N-SCS的过氧化物酶样活性将低浓度H 2 O 2转化为自由基氧物质以抵抗细菌。数据显示,通过N-SCS的过氧化物酶样催化反应,改善了抗革兰阴性细菌(大肠杆菌),革兰氏菌(葡萄球菌)和多药抗性细菌的抗菌性能。重要的是,除了产生针对细菌的热量外,近红外激光曝光还促进了N-SCS的过氧化物酶活性,以进一步产生杀灭细菌的自由基氧。此外,这种催化 - 光热抗菌策略表明了动物模型中感染伤口的加速恢复。因此,我们的作品提供了一种新的协同抗感染策略,并进一步扩大了碳基纳佐在生物医学中的应用。

著录项

  • 来源
    《Biomaterials Science》 |2019年第10期|共11页
  • 作者单位

    Yangzhou Univ Med Coll Dept Pharmacol Inst Translat Med Yangzhou 225001 Jiangsu Peoples R China;

    Yangzhou Univ Med Coll Dept Pharmacol Inst Translat Med Yangzhou 225001 Jiangsu Peoples R China;

    Yangzhou Univ Med Coll Dept Pharmacol Inst Translat Med Yangzhou 225001 Jiangsu Peoples R China;

    Yangzhou Univ Sch Chem &

    Chem Engn Yangzhou 225002 Jiangsu Peoples R China;

    Yangzhou Univ Sch Chem &

    Chem Engn Yangzhou 225002 Jiangsu Peoples R China;

    Yangzhou Univ Sch Chem &

    Chem Engn Yangzhou 225002 Jiangsu Peoples R China;

    Yangzhou Univ Sch Chem &

    Chem Engn Yangzhou 225002 Jiangsu Peoples R China;

    Yangzhou Univ Med Coll Dept Pharmacol Inst Translat Med Yangzhou 225001 Jiangsu Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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