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Identification of bacterial susceptibility to antibiotics using gold nanoparticles

机译:使用金纳米粒子鉴定对抗生素的细菌易感性

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Inexpensive and rapid bacterial detection and antimicrobial susceptibility assays are desperately needed, as the determination of which antibiotic to use and its administration at effective dosages is critical. Currently, the assessment of antimicrobial susceptibility takes 24 to 48 hours. Hence, we have developed a nanoparticle-based antimicrobial susceptibility assay, utilizing the Concanavalin A-induced clustering of dextran-coated gold nanoparticles. When the bacteria do not grow, addition of Concanavalin A promotes the formation of extensive dextran gold nanoassemblies. The induction of these nanoassemblies is mediated by the presence of tree carbohydrates, causing large shifts in the nanoparticles' surface plasmon band. In contrast, when the bacteria grow, the levels of tree carbohydrates decrease, thus the size of the gold nanoparticle clusters and the plasmonic shifts are smaller. This gold nanopaiticle-based assay provides results within 3 hours and can be used for the high-throughput screening of samples during epidemics.
机译:考虑廉价和快速的细菌检测和抗微生物敏感性测定,因为测定使用哪种抗生素和其在有效剂量的给药至关重要。目前,抗微生物易感性的评估需要24至48小时。因此,我们开发了一种基于纳米粒子的抗微生物敏感性测定,利用搅拌甲酰胺诱导的葡聚糖涂覆的金纳米颗粒聚类。当细菌不生长时,加入康贾林蛋白A促进了广泛的葡聚糖金纳结石的形成。这些纳米结合物的诱导是通过树碳水化合物的存在介导的,导致纳米颗粒表面等离子体带中的大移位。相反,当细菌生长时,树碳水化合物的水平降低,因此金纳米颗粒簇的尺寸和等离子体移位较小。基于Gold Nanopaiticle的测定在3小时内提供结果,可用于在流行病中的样品的高通量筛选。

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