Utah State University, Department of Biological Engineering, Logan, UT, USA.
Electrophoresis. 2019 May;40(10):1446-1456. doi: 10.1002/elps.201800389. Epub 2019 Mar 29.
The traditional bacterial identification method of growing colonies on agar plates can take several days to weeks to complete depending on the growth rate of the bacteria. Successfully decreasing this analysis time requires cell isolation followed by identification. One way to decrease analysis time is by combining dielectrophoresis (DEP), a common technique used for cell sorting and isolation, and Raman spectroscopy for cell identification. DEP-Raman devices have been used for bacterial analysis, however, these devices have a number of drawbacks including sample heating, cell-to-electrode proximity that limits throughput and separation efficiency, electrode fouling, or inability to address sample debris. Presented here is a contactless DEP-Raman device to simultaneously isolate and identify particles from a mixed sample while avoiding common drawbacks associated with other DEP designs. Using the device, a mixed sample of bacteria and 3 μm polystyrene spheres were isolated from each other and a Raman spectrum of the trapped bacteria was acquired, indicating the potential for cDEP-Raman devices to decrease the analysis time of bacteria.
传统的细菌鉴定方法是在琼脂平板上培养菌落,这可能需要几天到几周的时间,具体取决于细菌的生长速度。成功缩短这一分析时间需要进行细胞分离,然后进行鉴定。一种缩短分析时间的方法是将介电泳(DEP)与拉曼光谱结合使用,DEP 是一种用于细胞分选和分离的常用技术,而拉曼光谱则用于细胞鉴定。DEP-Raman 设备已被用于细菌分析,但这些设备存在许多缺点,包括样品加热、限制通量和分离效率的细胞与电极的接近程度、电极污垢或无法处理样品碎片。本文介绍了一种非接触式的 DEP-Raman 设备,可在避免与其他 DEP 设计相关的常见缺点的同时,从混合样品中同时分离和鉴定颗粒。使用该设备,从混合的细菌和 3μm 聚苯乙烯球样品中彼此分离,并获取了捕获细菌的拉曼光谱,表明 cDEP-Raman 设备有可能缩短细菌的分析时间。