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Performance of Optimized Phage-based Magnetoelastic Biosensors for Salmonella Typhimurium Detection on Tomatoes

机译:西红柿沙门氏菌血吸虫检测优化噬菌体磁性组体传感器的性能

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An optimized, phage-based magnetoelastic (ME) biosensor method was performed to detect Salmonella Typhimurium contaminates on the surface of tomatoes and to determine the detection limit. After serial inoculations of S. Typhimurium on the surface of the tomatoes, the S. Typhimurium on the surfaces was analyzed using an optimized ME biosensor method. Detection limit and sensitivity of the ME biosensor for detection of S. Typhimurium on tomatoes were determined. The resonant frequency shifts of the ME measurement sensors increased linearly with an increase in the concentration of S. Typhimurium. Contrastingly, the control sensors showed relatively constant and low magnitude frequency shifts. Detection limit and sensitivity of the ME biosensor method was determined to be (1.78±0.17) log CFU/cm~2 and 922.7 Hz.
机译:进行了优化的噬菌体的磁形弹性(ME)生物传感器方法,以检测西红柿表面上的沙门氏菌毒蕈氏菌污染,并确定检测限。通过优化的ME生物传感器方法分析表面上的S. Typhimurium在西红柿表面上的S. typhimurium的血吸虫接受。确定了ME生物传感器检测西红柿的伤寒伤寒伤寒的检测极限和敏感性。 ME测量传感器的谐振频率偏移随着S. Typhimurium的浓度而导致的线性增加。比较地,控制传感器显示出相对恒定和低幅度频移。确定ME生物传感器方法的检测限和敏感性是(1.78±0.17)log CFU / cm〜2和922.7 Hz。

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