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Copper/Carbon Hybrid Nanozyme: Tuning Catalytic Activity by the Copper State for Antibacterial Therapy

机译:铜/碳杂合纳佐:通过铜状态调节催化活性以进行抗菌治疗

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摘要

Metal-carbon hybrid materials have shown promise as potential enzyme mimetics for antibacterial therapy; however, the effects of metal states and corresponding antibacterial mechanisms are largely unknown. Here, two kinds of copper/carbon nanozymes were designed, with tuned copper states from Cu-0 to Cu2+. Results revealed that the copper/carbon nanozymes exhibited copper state-dependent peroxidase-, catalase-, and superoxide dismutase-like activities. Furthermore, the antibacterial activities were also primarily determined by the copper state. The different antibacterial mechanisms of these two copper/carbon nanozymes were also proposed. For the CuO-modified copper/carbon nanozymes, the released Cu2+ caused membrane damage, lipid peroxidation, and DNA degradation of Gram-negative bacteria, whereas, for Cu-modified copper/carbon nanozymes, the generation of reactive oxygen species (ROS) via peroxidase-like catalytic reactions was the determining factor against both Gram-positive and Gram-negative bacteria. Lastly, we established two bacterially infected animal models, i.e., bacteria-infected enteritis and wound healing, to confirm the antibacterial ability of the copper/carbon nanozymes. Our findings provide a deeper understanding of metal state-dependent enzyme-like and antibacterial activities and highlight a new approach for designing novel and selective antibacterial therapies based on metal-carbon nanozymes.
机译:金属 - 碳杂化材料已显示出抗菌疗法的潜在酶模拟物;然而,金属状态和相应的抗菌机制的影响主要是未知的。这里,设计了两种铜/碳纳佐亚沸酶,用来自Cu-0至Cu2 +的调谐铜状态。结果表明,铜/碳纳佐型表现出铜状态依赖性过氧化物酶 - ,过氧化氢酶和超氧化物歧化酶样活性。此外,抗菌活性也主要由铜状态决定。还提出了这两种铜/碳纳米酶的不同抗菌机制。对于CuO改性的铜/碳纳佐,释放的Cu2 +引起的膜损伤,脂质过氧化和DNA劣化的革兰氏阴性细菌,而对于Cu-改性的铜/碳纳米酶,通过产生活性氧(ROS)的产生过氧化物酶样催化反应是针对革兰氏阳性和革兰氏阴性细菌的确定因素。最后,我们建立了两种细菌感染的动物模型,即细菌感染的肠炎和伤口愈合,以确认铜/碳纳米酶的抗菌能力。我们的研究结果提供了对金属状态依赖性酶样和抗菌活性的更深入了解,并突出了一种基于金属 - 碳纳佐的新选择和选择性抗菌疗法的新方法。

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