School of Environment and Natural Resources, Renmin University of China, Beijing, 100872, China.
School of Environment and Natural Resources, Renmin University of China, Beijing, 100872, China.
Talanta. 2020 Apr 1;210:120650. doi: 10.1016/j.talanta.2019.120650. Epub 2019 Dec 19.
The portable and automated fluorescence microarray biosensing platform (FMB) that employed a compact hybrid optical structure, microfluidics, and microarray biosensors was constructed for on-site parallel detection of multiple analytes. In the FMB, a hybrid optical structure that composed of a 1 × 4 single mode fiber optic coupler, four fiber optic switches, a single-multi mode fiber optic bundle coupler was at the first time developed for the transmission of the excitation light and the collection and transmission of multi-channel fluorescence signals. Through the control of fiber optic switches, the parallel fluorescence assay of four channels could be achieved using only one excitation light and one photodiode detector on the basis of the time-resolved effect. This optical design not only greatly increased the efficiency of light transmission and fluorescence collection and detection sensitivity of the FMB, but also allows the miniaturization and portability of the whole system because of few optical separation elements used and no requirement of rigorous optical alignment. Taking Microcystin-LR (MC-LR), 2,4-D, atrazine (ATZ), and bisphenol A (BPA) for example, the application potential of the FMB to rapidly and parallelly detect four typical pollutants in real water with high sensitivity and specificity was demonstrated. The limits of detection of MC-LR, 2,4-D, ATZ, and BPA were 0.04 μg/L, 0.09 μg/L, 0.02 μg/L, and 0.03 μg/L, respectively. The FMB could also achieve early-warning of pollutants thanks to its ability of rapidity, high-frequency, and multiple-analyte detection. The FMB has significant implications as a multiplexable, portable, rapid, and quantitative detection platform for pollution accidents and water quality management to satisfy the increasing demands of alerting and protecting civilians.
用于现场并行检测多种分析物的便携式自动化荧光微阵列生物传感平台 (FMB) 构建了,该平台采用了紧凑的混合光学结构、微流控和微阵列生物传感器。在 FMB 中,首次开发了一种混合光学结构,由 1×4 单模光纤耦合器、四个光纤开关、单多模光纤束耦合器组成,用于传输激发光和多路荧光信号的采集和传输。通过光纤开关的控制,在基于时间分辨效应的基础上,仅使用一个激发光和一个光电二极管探测器就可以实现四路并行荧光分析。这种光学设计不仅大大提高了 FMB 的光传输效率、荧光采集和检测灵敏度,而且由于使用的光学分离元件少,不需要严格的光学对准,因此允许整个系统的小型化和便携化。以微囊藻毒素-LR (MC-LR)、2,4-D、莠去津 (ATZ) 和双酚 A (BPA) 为例,展示了 FMB 快速、并行地检测实际水样中四种典型污染物的高灵敏度和特异性的应用潜力。MC-LR、2,4-D、ATZ 和 BPA 的检测限分别为 0.04μg/L、0.09μg/L、0.02μg/L 和 0.03μg/L。FMB 还能够通过其快速、高频和多分析物检测的能力实现对污染物的预警。FMB 作为一种可复用、便携式、快速和定量的污染事故和水质管理检测平台,具有重要意义,可以满足对警报和保护平民的日益增长的需求。