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Wireless surface-scanning ME biosensors system for bacterial detection on fresh produce

机译:用于新鲜产品细菌检测的无线表面扫描ME生物传感器系统

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This paper investigates the use of wireless, magnetoelastic (ME) biosensors for the surface-scanning detection of Salmonella Typhimurium on fresh produce (eggs, spinach leaves, tomatoes, etc.). The ME biosensor consists of a ME resonator as the sensor platform and E2 phage as the bio-recognition element. The E2 phage is genetically engineered to specifically bind with Salmonella Typhimurium. The ME biosensor is actuated into resonance by an externally applied magnetic field. A microfabricated planar coil was used to measure the resonant frequencies of multiple ME biosensors. The resonant frequency of the biosensors before and after the exposure to the spiked fresh produce was measured. When the Salmonella cells bind with the ME biosensors, the mass of the resonator increases, resulting in a decrease in the sensor's resonant frequency. Real time, in-situ bacteria detection on fresh produce surfaces was demonstrated and compared with previous detection results.
机译:本文研究了无线,磁力弹性(ME)生物传感器的使用,用于在新鲜农产品(鸡蛋,菠菜叶,西红柿等)上的沙门氏菌伤寒毒蕈的表面扫描检测。 ME Biosensor由ME谐振器作为传感器平台和E2噬菌体作为生物识别元件组成。 E2噬菌体遗传工程化以特异性与沙门氏菌毛蘑菇。通过外部施加的磁场致动我的生物传感器。使用微制造的平面线圈测量多个ME生物传感器的共振频率。测量了在暴露于尖刺的新鲜产物之前和之后的生物传感器的共振频率。当沙门氏菌细胞与ME生物传感器结合时,谐振器的质量增加,导致传感器的谐振频率降低。实时,对新鲜产物表面的原位细菌检测并与先前的检测结果进行了比较。

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