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控制原子精确的金纳米团簇上的吡啶鎓两性离子配体比例,以根除革兰氏阳性耐药细菌并保持生物相容性。

Controlling the pyridinium-zwitterionic ligand ratio on atomically precise gold nanoclusters allowing for eradicating Gram-positive drug-resistant bacteria and retaining biocompatibility.

作者信息

Pang Zeyang, Li Qizhen, Jia Yuexiao, Yan Weixiao, Qi Jie, Guo Yuan, Hu Fupin, Zhou Dejian, Jiang Xingyu

机构信息

Department of Biomedical Engineering, Southern University of Science and Technology No 1088, Xueyuan Rd, Nanshan District Shenzhen Guangdong 518055 P. R. China

School of Chemistry and Astbury Centre for Structural Molecular Biology, University of Leeds Leeds LS2 9JT UK

出版信息

Chem Sci. 2021 Oct 25;12(44):14871-14882. doi: 10.1039/d1sc03056f. eCollection 2021 Nov 17.

Abstract

Infections caused by multidrug-resistant (MDR) bacteria are an increasing global healthcare concern. In this study, we developed a dual-ligand-functionalised Au(SR) (SR) -type gold nanocluster and determined its antibacterial activity against MDR bacterial strains. The pyridinium ligand (SR) provided bactericidal potency and the zwitterionic ligand (SR) enhanced the stability and biocompatibility. By optimising the ligand ratio, our gold nanocluster could effectively kill MDR Gram-positive bacteria multiple antibacterial actions, including inducing bacterial aggregation, disrupting bacterial membrane integrity and potential, and generating reactive oxygen species. Moreover, combining the optimised gold nanocluster with common antibiotics could significantly enhance the antibacterial activity against MDR bacteria both in and animal models of skin infections. Furthermore, the fluorescence of the gold nanocluster at the second near-infrared (NIR-II) biological window allowed for the monitoring of its biodistribution and body clearance, which confirmed that the gold nanoclusters had good renal clearance and biocompatibility. This study provides a new strategy to combat the MDR challenge using multifunctional gold nanomaterials.

摘要

多重耐药(MDR)细菌引起的感染日益成为全球医疗保健关注的问题。在本研究中,我们开发了一种双配体功能化的Au(SR)₂型金纳米簇,并测定了其对MDR细菌菌株的抗菌活性。吡啶鎓配体(SR)提供杀菌效力,两性离子配体(SR)增强稳定性和生物相容性。通过优化配体比例,我们的金纳米簇可以通过多种抗菌作用有效杀死MDR革兰氏阳性菌,包括诱导细菌聚集、破坏细菌膜完整性和电位以及产生活性氧。此外,将优化后的金纳米簇与常用抗生素相结合,在体外和皮肤感染动物模型中均能显著增强对MDR细菌的抗菌活性。此外,金纳米簇在第二近红外(NIR-II)生物窗口的荧光允许监测其生物分布和体内清除情况,这证实了金纳米簇具有良好的肾脏清除率和生物相容性。本研究提供了一种使用多功能金纳米材料应对MDR挑战的新策略。

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