利用智能手机光学机械平台检测和确认鼠伤寒沙门氏菌

H. Min, Hansel A. Mina, Sungho Shin, Iyll-Joon Doh, J. P. Robinson, Bartek Rajwa, Amanda J. Deering, E. Bae
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引用次数: 0

摘要

沙门氏菌(Salmonella ser.鼠伤寒沙门氏菌因导致严重的食源性疾病而臭名昭著,对公众健康造成了极大的威胁。这项研究介绍了一种基于石英晶体微天平的创新系统,旨在通过将系统集成在智能手机周围来检测目标病原体。该系统通过双模式方法运行,依靠两种不同的机制:测量细菌质量变化引起的频率变化,以及量化 FITC 标记抗体捕获细菌产生的荧光强度。加入 FITC 标记的抗体不仅能增强共振频率偏移,还能通过荧光信号进行直观确认。石英晶体微天平系统与智能手机的整合实现了实时监控。该系统可显示频率和温度数据,同时还能捕捉荧光强度,以估算目标分析物的浓度。在使用 FITC 标记的抗体后,基于智能手机的系统成功检测出 105 CFU/mL 浓度范围内的鼠伤寒沙门氏菌。这种便携式 QCM 系统是病原体检测领域的一大进步,在改进食品安全规程和加强公共卫生保障方面具有巨大潜力。
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Detection and confirmation of Salmonella Typhimurium by smartphone-enabled optomechanical platform
Salmonella ser. Typhimurium is notorious for causing serious foodborne illnesses and presenting considerable public health risks. The study introduces an innovative system based on a quartz crystal microbalance, designed to detect the target pathogen by integrating the system around a smartphone. The system operates through a dual-mode approach, relying on two distinct mechanisms: measuring frequency changes due to variations in bacterial mass and quantifying fluorescence intensities resulting from bacteria captured by FITC-labeled antibodies. Incorporating FITC-labeled antibodies not only enhances the resonance frequency shift but also offers visual confirmation through the fluorescence signal. The integration of the quartz crystal microbalance system with a smartphone enables real-time monitoring. This system displays both frequency and temperature data, while also capturing fluorescence intensities to estimate the concentration of the target analyte. The smartphone-based system successfully detected Salmonella Typhimurium within a concentration range of 105 CFU/mL after the application of FITC-labeled antibodies. This portable QCM system represents a promising advancement in pathogen detection, holding significant potential to improve food safety protocols and strengthen public health safeguards.
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