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首页> 外文期刊>Journal of Nanoparticle Research >Enhancement of antibiotic effect via gold:silver-alloy nanoparticles
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Enhancement of antibiotic effect via gold:silver-alloy nanoparticles

机译:通过金:银合金纳米颗粒增强抗生素作用

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A strategy for the development of novel antimicrobials is to combine the stability and pleiotropic effects of inorganic compounds with the specificity and efficiency of organic compounds, such as antibiotics. Here we report on the use of gold:silver-alloy (Au:Ag-alloy) nanoparticles, obtained via a single-step citrate co-reduction method, combined to conventional antibiotics to enhance their antimicrobial effect on bacteria. Addition of the alloy nanoparticles considerably decreased the dose of antibiotic necessary to show antimicrobial effect, both for bacterial cells growing in rich medium in suspension and for bacterial cells resting in a physiological buffer on a humid cellulose surface. The observed effect was more pronounced than the sum of the individual effects of the nanoparticles and antibiotic. We demonstrate the enhancement effect of Au:Ag-alloy nanoparticles with a size distribution of 32.5 ± 7.5 nm mean diameter on the antimicrobial effect of (i) kanamycin on Escherichia coli (Gram-negative bacterium), and (ii) a β-lactam antibiotic on both a sensitive and resistant strain of Staphylococcus aureus (Gram-positive bacterium). Together, these results may pave the way for the combined use of nanoparticle–antibiotic conjugates towards decreasing antibiotic resistance currently observed for certain bacteria and conventional antibiotics.
机译:开发新型抗菌剂的策略是将无机化合物的稳定性和多效性与抗生素等有机化合物的特异性和效率相结合。在这里,我们报告了通过单步柠檬酸盐共还原法获得的金:银合金(Au:Ag合金)纳米颗粒与常规抗生素的结合使用,以增强其对细菌的抗菌作用。合金纳米颗粒的添加大大降低了显示抗菌作用所需的抗生素剂量,无论是对于在悬浮液中富集培养基中生长的细菌细胞还是在湿润的纤维素表面上生理缓冲液中放置的细菌细胞而言。所观察到的效果比纳米颗粒和抗生素的单独效果之和更为明显。我们证明了具有32.5±7.5 nm平均直径尺寸分布的Au:Ag合金纳米颗粒对(i)卡那霉素对大肠杆菌(革兰氏阴性细菌)和(ii)β-内酰胺的抗菌作用的增强作用对金黄色葡萄球菌(革兰氏阳性细菌)敏感和耐药菌株均使用抗生素。总之,这些结果可能为纳米颗粒-抗生素共轭物的组合使用降低某些细菌和常规抗生素目前的抗生素耐药性铺平道路。

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