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A new wireless detection device for the in-situ identification of Salmonella Typhimurium

机译:一种新型无线检测装置,用于鼠伤寒沙门氏菌的原位鉴定

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摘要

This paper presents a new device and method for the in-situ detection of Salmonella Typhimurium on tomato surfaces. This real-time in-situ detection was accomplished with phage-based magnetoelastic (ME) biosensors on fresh food surfaces. The E2 phage from a landscape phage library serves as the bio-recognition element that has the capability of binding specifically with S. Typhimurium. This mass-sensitive ME biosensor is wirelessly actuated into mechanical resonance by an externally applied time-varying magnetic field. When the biosensor binds with S. Typhimurium, the mass of the sensor increases, resulting in a decrease in the sensor's resonant frequency. Until now, ME sensors had to be collected from the tomato surface where they are exposed to S. Typhimurium and inserted into a measurement coil for the detection of the bacterium. In contrast, the newly designed test device allows the whole detection process to take place directly on the tomato. Changes in resonant frequency over time due to the accumulation of S. Typhimurium on the sensor were measured and are presented. Real-time in-situ detection of 20 minutes was achieved. In addition, this new methodology effectively decreases the measurement error and enables the simultaneous detection of multiple pathogens.
机译:本文提出了一种在番茄表面上原位检测鼠伤寒沙门氏菌的新设备和方法。这种实时的原位检测是通过在新鲜食品表面上使用基于噬菌体的磁弹性(ME)生物传感器完成的。来自景观噬菌体文库的E2噬菌体作为生物识别元件,具有与鼠伤寒沙门氏菌特异性结合的能力。这种对质量敏感的ME生物传感器通过外部施加的时变磁场无线激活为机械共振。当生物传感器与鼠伤寒沙门氏菌结合时,传感器的质量增加,从而导致传感器的共振频率降低。到目前为止,必须从暴露于鼠伤寒沙门氏菌的番茄表面收集ME传感器,并将其插入测量线圈中以检测细菌。相比之下,新设计的测试设备允许整个检测过程直接在番茄上进行。测量并提出了由于鼠伤寒沙门氏菌在传感器上积累而导致的共振频率随时间的变化。实现了20分钟的实时原位检测。此外,这种新方法可有效减少测量误差,并能同时检测多种病原体。

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