Rapid detection of cocaine using aptamer-based biosensor on an evanescent wave fibre platform

Author:

Qiu Yong1ORCID,Tang Yunfei12,Li Bing3,He Miao1

Affiliation:

1. State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing 100084, People's Republic of China

2. Ecological Environmental Protection Investments Company, China Communications Construction Corporation, Beijing 100013, People's Republic of China

3. School of Energy and Environmental Engineering, University of Beijing Science and Technology, Beijing 100083, People's Republic of China

Abstract

The rapid detection of cocaine has received considerable attention because of the instantaneous and adverse effects of cocaine overdose on human health. Aptamer-based biosensors for cocaine detection have been well established for research and application. However, reducing the analytic duration without deteriorating the sensitivity still remains as a challenge. Here, we proposed an aptamer-based evanescent wave fibre (EWF) biosensor to rapidly detect cocaine in a wide working range. At first, the aptamers were conjugated to complementary DNA with fluorescence tag and such conjugants were then immobilized on magnetic beads. After cocaine was introduced to compete against the aptamer-DNA conjugants, the released DNA in supernatant was detected on the EWF platform. The dynamic curves of EWF signals could be interpreted by the first-order kinetics and saturation model. The semi-log calibration curve covered a working range of 10–5000 µM of cocaine, and the limit of detection was approximately 10.5 µM. The duration of the full procedure was 990 s (16.5 min), and the detection interval was 390 s (6.5 min). The specified detection of cocaine was confirmed from four typical pharmaceutic agents. The analysis was repeated for 50 cycles without significant loss of sensitivity. Therefore, the aptamer-based EWF biosensor is a feasible solution to rapidly detect cocaine.

Funder

Technology Research and Development Program of Guangxi Zhuang Autonomous Region

Chinese High-tech R&D (863) Program

Great National Instrument R&D Special Program

National Natural Science Foundation of China

Special fund of State Key Joint Laboratory of Environment Simulation and Pollution Control

Publisher

The Royal Society

Subject

Multidisciplinary

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