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Antibacterial activity of chlorogenic acid-loaded SiO2 nanoparticles caused by accumulation of reactive oxygen species

机译:由反应性氧物种积累引起的抗菌酸的SiO2纳米粒子的抗菌活性

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Diseases caused by pathogenic bacilli pose an increasing threat to human health. A common feature of these bacteria is a complete cell wall; therefore, drugs that can penetrate this protective barrier could be used as a novel approach for treating these infections. Here we present a simple method for synthesizing a silica mesoporous material loaded with cadmium selenide (CdSe) and chlorogenic acid. Using UV-visible, fluorescence, and infrared imaging in combination with transmission electron microscopy, it was shown that CdSe and chlorogenic acid could be successfully embedded in the mesopores of silica nanoparticles (CSC NPs), and these NPs presented with a strong fluorescence, uniform size, and good dispersion. Additionally, the results of these analyses indicated that the fluorescence of the CSC NPs was localized within the cells of Escherichia coli and Bacillus subtilis, signifying that these NPs could breach the cell wall and enter the cells of these two bacilli. Additional assessments found that these CSC NPs inhibited the proliferation of the bacteria by disrupting the cell wall, and this was most likely due to the overproduction of reactive oxygen species induced by chlorogenic acid. Importantly, histopathology analysis indicated that the CSC NPs had limited side effects and high biocompatibility.
机译:致病性杆菌造成的疾病对人类健康产生了越来越大的威胁。这些细菌的常见特征是完整的细胞壁;因此,可以渗透这种保护屏障的药物可以用作治疗这些感染的新方法。在这里,我们提出了一种简单的方法,用于合成装有硒化镉(CdSe)和鲜l氯酸的二氧化硅中孔材料。使用UV可见光,荧光和红外成像与透射电子显微镜相结合,结果表明CDSE和绿原酸可以成功地嵌入二氧化硅纳米粒子(CSC NPS)中,并且这些NP具有强荧光,均匀尺寸,良好的分散。另外,这些分析的结果表明,CSC NP的荧光位于大肠杆菌和枯草芽孢杆菌的细胞内,表示这些NP可以突破细胞壁并进入这两个杆菌的细胞。额外的评估发现,这些CSC NPS通过破坏细胞壁来抑制细菌的增殖,这很可能是由于含有绿原酸诱导的反应性氧物质的过量生产。重要的是,组织病理学分析表明CSC NPS的副作用有限和高生物相容性。

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