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Published on: September 16, 2014
Ratiometric self-calibration strategy based on conductive hydrogen bond organic framework for reliable biosensing of
Youfa Wang1, Shuang Wu1, Rui Wang1
1Key Laboratory of Environmental Medicine and Engineering, Ministry of Education, and Department of Nutrition and Food Hygiene, School of Public Health, Southeast University, Nanjing, 210009, China.
Abstract:
Ara h 1, the primary peanut allergen, is responsible for most allergic reactions, prompting the need for precise detection methods to safeguard those with peanut allergies. Herein, we developed a novel self-calibrating ratio electrochemical immunosensor for ultrasensitive Ara h 1 detection, leveraging a conductive porous hydrogen-bonded organic framework (HOF) for signal amplification. Concretely, a capture substrate was fabricated on the electrode surface by compositing ferrocene-covalently modified silica with gold nanoparticles, serving the dual functions of coupling Ara h 1 aptamers and generating a ferrocene electrochemical signal. A negatively charged HOF effectively adsorbed positively charged thionine through electrostatic attraction and others, producing a second electrical signal and loading Ara h 1 antibodies. In the presence of Ara h 1, the aptamers and antibodies specifically bind to target, forming a sandwich structure on the electrode surface that activates ratiometric sensing. The biosensor rendered a wide linear detection range (5∼1250 ng/mL) and a low limit of detection (1.29 ng/mL). The biosensor's potential and reliability for real sample detection were confirmed through tests on 20 real samples and spiking experiments. The proposed ratiometric detection strategy provides a practical tool for allergen labeling and allergy prevention.

