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Antimicrobial Susceptibility Test with Plasmonic Imaging and Tracking of Single Bacterial Motions on Nanometer Scale

机译:等离子成像和纳米级单细菌运动跟踪的抗菌药敏试验

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Antimicrobial susceptibility tests (ASTs) are important for confirming susceptibility to empirical antibiotics and detecting resistance in bacterial isolates. Currently, most ASTs performed in clinical microbiology laboratories are based on bacterial culturing, which take days to complete for slowly growing microorganisms. A faster AST will reduce morbidity and mortality rates and help healthcare providers administer narrow spectrum antibiotics at the earliest possible treatment stage. We report the development of a nonculture-based AST using a plasmonic imaging and tracking (PIT) technology. We track the motion of individual bacterial cells tethered to a surface with nanometer (nm) precision and correlate the phenotypic motion with bacterial metabolism and antibiotic action. We show that antibiotic action significantly slows down bacterial motion, which can be quantified for development of a rapid phenotypic-based AST.
机译:抗菌药物敏感性试验(ASTs)对于确认对经验性抗生素的敏感性以及检测细菌分离株的耐药性都很重要。当前,在临床微生物学实验室中执行的大多数AST是基于细菌培养的,对于缓慢生长的微生物,需要数天才能完成。更快的AST可以降低发病率和死亡率,并帮助医疗保健提供者在尽可能早的治疗阶段使用窄谱抗生素。我们报告使用等离子体成像和跟踪(PIT)技术的基于非文化的AST的发展。我们跟踪以纳米(nm)精度拴系到表面的单个细菌细胞的运动,并将表型运动与细菌代谢和抗生素作用相关联。我们表明,抗生素作用显着减慢了细菌的运动,这可以量化为快速的基于表型的AST的发展。

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