School of Environment and Natural Resources, Renmin University of China, Beijing 100872, China.
State Key Joint Laboratory of ESPC, School of Environment, Tsinghua University, Beijing 100084, China.
Biosens Bioelectron. 2018 Dec 15;121:27-33. doi: 10.1016/j.bios.2018.08.062. Epub 2018 Aug 28.
A novel portable fiber optical chemiluminescent biosensor (FOCB) system was successfully constructed using fiber optic bio-probe as biorecognition element as well as transducer and a Si-based photodiode detector (PD-3000). The compact design of FOCB with free magnetic beads and photomultiplier allows it to be portable and suitable for on-site and automatic detection of targets, as well as to be cost-effective and small sample volume (only 40.0 µL). The sensitivity of 5 fW could be obtained for the FOCB due to the high performance of PD-3000 and no background light signal. Next, the FOCB was applied for the CL-based detection of microcystin-LR (MC-LR) in water using hapten-carrier protein conjugates modified fiber optic bio-probe as biorecognition element. Based on indirect competitive sandwich-like CL immunoassay principle, the highly sensitive detection of MC-LR was achieved using FOCB system. Under optimal conditions, the limit of detection for MC-LR is 0.03 µg/L, which is comparable with that of most reported MC-LR immunoassay methods. The robustness of the hapten-carrier protein-modified biosensor surface allowed multiple MC-LR immunoassays without any significant loss of performance, which ensured accurate and cost-effective detection results. The proposed strategy demonstrated good recovery, precision, and accuracy through the evaluation of the spiked water samples. The FOCB system can be readily extended toward the on-site real-time sensitive detection of other targets in the field of environment, food, and medical diagnosis.
一种新型便携式光纤化学发光生物传感器(FOCB)系统成功构建,该系统使用光纤生物探针作为生物识别元件以及换能器和基于硅的光电二极管探测器(PD-3000)。FOCB 的紧凑设计带有自由磁珠和光电倍增管,使其具有便携性,适用于目标的现场和自动检测,并且具有成本效益和小样本量(仅 40.0 µL)。由于 PD-3000 的高性能和无背景光信号,FOCB 的灵敏度可达到 5 fW。接下来,FOCB 被应用于使用半抗原载体蛋白缀合物修饰光纤生物探针作为生物识别元件的基于 CL 的水中微囊藻毒素-LR(MC-LR)的检测。基于间接竞争夹心 CL 免疫分析原理,使用 FOCB 系统实现了对 MC-LR 的高灵敏度检测。在最佳条件下,MC-LR 的检测限为 0.03 µg/L,可与大多数报道的 MC-LR 免疫分析方法相媲美。半抗原载体蛋白修饰生物传感器表面的稳健性允许进行多次 MC-LR 免疫分析,而不会显着降低性能,从而确保了准确且具有成本效益的检测结果。通过对加标水样的评估,该策略表现出良好的回收率、精密度和准确性。该 FOCB 系统可以很容易地扩展到环境、食品和医学诊断等领域的现场实时敏感检测其他目标。