Key Laboratory of Agricultural Information Acquisition Technology, China Agricultural University, Beijing 100083, China.
School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore 639798.
Analyst. 2021 Jul 21;146(14):4622-4629. doi: 10.1039/d1an00495f. Epub 2021 Jun 24.
An enzyme assay based method in a microfluidic slipchip was proposed for the rapid and label-free detection of E. coli. The specific target analyte of E. coli was β-d-glucuronidase (GUS) which could catalyze the substrate 6-chloro-4-methyl-umbelliferyl-β-d-glucuronide (6-CMUG) to release the fluorescent molecule 6-chloro-4-methyl-umbelliferyl (6-CMU). E. coli culture, lysis and enzymatic reaction steps could be conducted in a microfluidic slipchip without any pumps and valves, which was tailored for fluorescence detection using a commercial plate reader, to achieve a rapid E. coli test. A mixture of the culture broth, enzyme inducer and E. coli was injected into the chambers on the top layer. A mixture of the substrate and lysis solution was injected into the chambers on the bottom layer. Then, the slipchip was slid to make each chamber independent. E. coli was cultured in the chamber in the LB broth for 2.5 h. After that, the slipchip was slid again to introduce the lysis solution into the culture solution for GUS release and enzyme reaction, and then incubated in the plate reader at 42 °C for another 2.5 h. During incubation, the fluorescence intensity of each chamber was recorded. This proposed label-free method can directly detect E. coli with a low concentration of 8 CFU per chamber within 5 h, thus showing great potential in on-site E. coli detection.
本文提出了一种在微流控 slipchip 上基于酶测定法的快速、无标记检测大肠杆菌的方法。大肠杆菌的特定目标分析物是β-d-葡糖醛酸酶(GUS),它可以催化底物 6-氯-4-甲基-伞形酮-β-d-葡糖苷酸(6-CMUG)释放出荧光分子 6-氯-4-甲基-伞形酮(6-CMU)。大肠杆菌的培养、裂解和酶反应步骤可以在微流控 slipchip 中进行,无需任何泵和阀,这是为使用商业平板读数器进行荧光检测而定制的,以实现快速的大肠杆菌测试。培养物、酶诱导剂和大肠杆菌的混合物被注入顶层的腔室中。底物和裂解溶液的混合物被注入底层的腔室中。然后,将 slipchip 滑动以使每个腔室独立。大肠杆菌在 LB 肉汤中培养 2.5 小时。之后,再次滑动 slipchip 将裂解溶液引入培养溶液中以释放 GUS 并进行酶反应,然后在 42°C 的平板读数器中孵育 2.5 小时。孵育过程中,记录每个腔室的荧光强度。这种无标记方法可以直接检测每个腔室中浓度低至 8 CFU 的大肠杆菌,在现场大肠杆菌检测中具有很大的潜力。