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Versatile molybdenum disulfide based antibacterial composites for in vitro enhanced sterilization and in vivo focal infection therapy

机译:多才多艺的二硫化钼抗菌复合材料对体外增强杀菌和体内病灶感染治疗

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Biologically, MoS2-based nanostructures have been intensely applied for the photothermal therapy of cancer, but rarely for antibacterial uses. In this contribution, a multifunctional chitosan (CS) functionalized magnetic MoS2 (abbreviated to CFM) was constructed to nonspecifically combat bacterial infection by integrating bacterial conjugation and enrichment, and NIR-triggered photothermal sterilization. Owing to the abundant introduced amino groups, the CFM complex offers a significantly enhanced conjugation efficiency without obvious specificity towards both Gram-positive and -negative bacteria compared to amino-free magnetic MoS2. The magnetic properties of CFM obtained from iron oxide facilitate the enrichment of a CFM-bacteria conjugate, improving the photothermal efficiency of CFM as a photothermal antibacterial agent. Specifically, after being trapped together with bacteria cells, CFM shows an enhanced in vitro photothermal sterilization ability. In vivo S. aureus-induced abscess treatment studies show faster healing when CFM is used as subcutaneous nano-localized heating sources with the assistance of an external magnet to concentrate the CFM-bacteria conjugate. This work establishes an innovative solution and a novel antimicrobial agent for combating bacterial infections without the use of antibiotics, which may open a new area of application and research for MoS2-based nanostructures.
机译:生物,MoS2-based纳米结构强烈的光照疗法的应用癌症,但很少抗菌用途。这贡献,多功能壳聚糖(CS)功能化磁性二硫化钼(缩写CFM)是非战斗细菌感染通过整合细菌结合和浓缩,NIR-triggered光热光谱分析绝育手术。介绍了氨基酸组,CFM复杂的提供显著增强结合效率对既无明显特异性革兰氏阳性和阴性细菌相比amino-free磁二硫化钼。CFM从氧化铁方便获得浓缩CFM-bacteria共轭的改善CFM的光热光谱分析效率光热光谱分析抗菌剂。与细菌细胞一起被困后,CFM显示了增强体外光热光谱分析杀菌能力。脓肿治疗研究显示愈合快当使用CFM皮下nano-localized加热的援助来源外部磁铁精矿CFM-bacteria共轭。解决方案和一种新型的抗菌剂对抗细菌感染没有使用抗生素,这可能会打开一个新领域MoS2-based的应用和研究nanostructures。

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