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Barbituric Acid-Based Magnetic N-Halamine Nanoparticles as Recyclable Antibacterial Agents

机译:基于巴比妥酸的磁性N-哈拉明纳米颗粒作为可循环使用的抗菌剂

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摘要

Novel recyclable bactericidal materials, barbituric acid-based magnetic N-halamine nanoparticles (BAMNH NPs), were fabricated by coating of magnetic silica nanoparticles (MS NPs) with barbituric acid-based N-halamine by the aid of the radical polymerization. The sterilizing effect on the bacterial strain is investigated by incubating Gram-negative bacteria (Escherichia coli and Pseudotnonas aeruginosa) and Gram-positive bacteria (Staphylococcus aureus and Bacillus subtilis). The as-prepared BAMNH NPs exhibit higher biocidal activity than the bulk powder barbituric acid-based N-halamine due to the high activated surface area. The structural effect of N-halamine on antimicrobial performance was fully clarified through the comparison between BAMNH NPs and hydantoin-based magnetic N-halamine nanoparticles (HMNH NPs). BAMNH NPs exhibited promising stability toward repeated washing and long-term storage. BAMNH NPs with different chlorine content were comparatively chosen to investigate the influence of chlorine content on the antimicrobial activity. An antibacterial recycle experiment revealed that no significant change occurred in the structure and antibacterial efficiency of BAMNH NPs after five recycle experiments. The combination of barbituric acid-based N-halamine with magnetic component results in an obvious synergistic effect and facilitates the repeated antibacterial applications, providing potential and ideal candidates for sterilization or even for the control of disease.
机译:新型的可循环利用的杀菌材料,即巴比妥酸基磁性N-卤胺纳米粒子(BAMNH NPs),是通过自由基聚合法在磁性二氧化硅纳米粒子(MS NPs)上涂覆巴比妥酸基N-卤胺纳米粒子而制得的。通过孵育革兰氏阴性细菌(大肠杆菌和铜绿假单胞菌)和革兰氏阳性细菌(金黄色葡萄球菌和枯草芽孢杆菌)来研究对细菌菌株的灭菌效果。所制备的BAMNH NPs具有较高的活化表面积,因此比散装的巴比妥酸基N-卤胺粉具有更高的杀菌活性。通过比较BAMNH NPs和基于乙内酰脲的磁性N-halamine纳米颗粒(HMNH NPs),充分阐明了N-卤胺对抗菌性能的结构作用。 BAMNH NP对反复洗涤和长期保存表现出良好的稳定性。比较研究了氯含量不同的BAMNH NP,以研究氯含量对抗菌活性的影响。一项抗菌回收实验表明,经过五次回收实验,BAMNH NPs的结构和抗菌效率均未发生明显变化。基于巴比妥酸的N-卤胺与磁性成分的结合产生明显的协同作用,并促进重复的抗菌应用,为灭菌甚至控制疾病提供了潜在的理想候选者。

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