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◆ The Analyst2026-09-01

Construction of two fluorescence aptasensors with RecJf exonuclease-induced signal amplification for detecting aflatoxin B1.

Zhengrong Tian, Yuhan Sun, Yijie Kong, Rujie Song, Yiwei Zhang, Yiyao Lv, Haonan Jiang, Ning Li

原始摘要(英文原文)· Original abstract
Aflatoxin contamination, especially aflatoxin B1 (AFB1), is a major global health concern. There is an urgent need to develop rapid, highly sensitive and specific sensing platforms. In this study, two fluorescence aptasensors were developed for AFB1 detection. The first used quantum dots (QDs) combined with aptamers as molecular recognition elements, along with RecJf exonuclease amplification and Fe3O4 nanoparticles for magnetic separation. In the absence of AFB1, the aptamer stably hybridizes with the cDNA-QDs conjugate, thereby shielding its 5' end from cleavage by RecJf exonuclease. Upon AFB1 binding, the duplex dissociates, exposing the aptamer's 5'-single-stranded region to RecJf-mediated hydrolysis-resulting in AFB1 release and enabling catalytic recycling and cascade signal amplification. It achieved a detection range of 0.01-100 ng mL-1 and a limit of 2.2 pg mL-1 (3σ/s). To further reduce interference and improve sensitivity, a second sensing system based on upconversion nanomaterials (UCNPs) was developed. This system, also using RecJf exonuclease amplification, achieved a broader range of 0.001-100 ng mL-1 and a lower detection limit of 0.56 pg mL-1. The QDs-based system required 90 min for detection, whereas the UCNPs-based system achieved detection in just 10 min. The two detection methods, particularly the UCNPs based one, enable specific identification of AFB1. Both aptasensors were successfully applied to the determination of AFB1 in spiked wheat flour and corn flour samples, with recoveries ranging from 89% to 111.6%, demonstrating their applicability to AFB1 analysis in cereal products. By replacing the aptamer, the proposed aptasensor can be further extended for the detection of other biological or chemical targets.
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Construction of two fluorescence aptasensors with RecJf exonuclease-induced signal amplification for detecting aflatoxin B1. — 科研速览 Science Skim