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Proof of principle of a novel impedance microbiology method based on bacteriophages functionalized paramagnetic nanobeads

机译:基于噬菌体官能化顺磁纳米孔的新型阻抗微生物方法原理证明

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An unconventional approach to impedance microbiology for Escherichia coli detection is under investigation. The detection principle of solution conductivity variation is based on intracellular content escape resulting from bacteriophage cell lysis. Bare electrodes on-chip included in a PDMS chamber were applied to the impedance measurements. Proofs of principle experiments were performed. In parallel, paramagnetic nano-beads were functionalised with selective phages for sample magnetic concentration and future methods integration. The system potential detection limit is about 10 CFU/chamber and provides the means for selective detection of viable cells. The methods integration could provide cost-effective results in less than 1 hour.
机译:研究了对大肠杆菌检测的影响微生物学的不常规方法。溶液电导率变化的检测原理基于噬菌体细胞裂解产生的细胞内含量逸出。将PDMS室中包含的裸电极应用于阻抗测量。进行原理实验证明。并行地,具有选择性噬菌体的顺磁纳米珠,用于样品磁性浓度和未来方法集成。系统电位检测限为约10个CFU /腔室,并提供用于选择性检测活细胞的装置。方法集成在不到1小时内,可以提供经济效益的结果。

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