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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Antimicrobial Properties of 2D MnO2 and MoS2 Nanomaterials Vertically Aligned on Graphene Materials and Ti3C2 MXene
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Antimicrobial Properties of 2D MnO2 and MoS2 Nanomaterials Vertically Aligned on Graphene Materials and Ti3C2 MXene

机译:2D MnO2和MOS2纳米材料的抗微生物性能垂直对齐在石墨烯材料和Ti3C2 mxene上

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Two-dimensional (2D) nanomaterials have attracted considerable attention in biomedical and environmental applications due to their antimicrobial activity. In the interest of investigating the primary antimicrobial mode-of-action of 2D nanomaterials, we studied the antimicrobial properties of MnO2 and MoS2, toward Gram-positive and Gram-negative bacteria. Bacillus subtilis and Escherichia coli bacteria were treated individually with 100 mu g/mL of randomly oriented and vertically aligned nanomaterials for similar to 3 h in the dark. The vertically aligned 2D MnO2 and MoS2 were grown on 2D sheets of graphene oxide, reduced graphene oxide, and Ti3C2 MXene. Measurements to determine the viability of bacteria in the presence of the 2D nanomaterials performed by using two complementary techniques, flow cytometry, and fluorescence imaging showed that, while MnO2 and MoS2 nanosheets show different antibacterial activities, in both cases, Gram-positive bacteria show a higher loss in membrane integrity. Scanning electron microscopy images suggest that the 2D nanomaterials, which have a detrimental effect on bacteria viability, compromise the cell wall, leading to significant morphological changes. We propose that the peptidoglycan mesh (PM) in the bacterial wall is likely the primary target of the 2D nanomaterials. Vertically aligned 2D MnO2 nanosheets showed the highest antimicrobial activity, suggesting that the edges of the nanosheets were likely compromising the cell walls upon contact.
机译:由于其抗微生物活性,二维(2D)纳米材料引起了生物医学和环境应用的显着关注。为了研究2D纳米材料的原发性抗微生物作用模式,我们研究了MNO2和MOS2的抗微生物性质,朝向革兰氏阳性和革兰氏阴性细菌。枯草芽孢杆菌和大肠杆菌细菌用100μg/ ml随机取向的和垂直取向的纳米材料单独处理,用于在黑暗中类似于3小时。在2D石墨烯氧化物,还原氧化物和Ti3C2 mxEne上生长垂直对准的2DmNO2和MOS2。测量以确定通过使用两个互补技术,流式细胞术和荧光成像进行的2D纳米材料存在下细菌的活力,而MNO2和MOS2纳米蛋白酶在两种情况下显示出不同的抗菌活性,则革兰氏阳性细菌显示膜完整性较高。扫描电子显微镜图像表明,对细菌活力有害影响的2D纳米材料损害了细胞壁,导致显着的形态变化。我们提出细菌壁中的肽聚糖网(PM)可能是2D纳米材料的主要靶标。垂直对齐的2D mnO2纳米片显示出最高的抗微生物活性,表明纳米片的边缘可能在接触时损害细胞壁。

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