食品科学 ›› 2026, Vol. 47 ›› Issue (14): 353-361.doi: 10.7506/spkx1002-6630-20260106-046

• 安全检测 • 上一篇    

基于Ag NPs/MXenes和CRISPR/Cas12a的电化学发光传感器构建及黄曲霉毒素B1检测应用

龙泽坤,李玥,宋雨默,张晓波,曹际娟   

  1. (大连民族大学生命科学学院,生物技术与资源利用教育部重点实验室,辽宁?大连 116600)
  • 发布日期:2026-08-24
  • 基金资助:
    国家自然科学基金青年科学基金项目(32402226);大连市优秀青年科技人才项目(2024RY026); 大连民族大学大学生创新创业训练计划省级项目(202512026105)

Construction and Application of an Electrochemiluminescence Sensor Based on Ag NPs/MXenes and CRISPR/Cas12a for Aflatoxin B1 Detection

LONG Zekun, LI Yue, SONG Yumo, ZHANG Xiaobo, CAO Jijuan   

  1. (Key Laboratory of Biotechnology and Bioresources Utilization, Ministry of Education, College of Life Science, Dalian Minzu University, Dalian 116600, China)
  • Published:2026-08-24

摘要: 黄曲霉毒素B1(aflatoxin B1,AFB1)是黄曲霉毒素家族中毒性最强的真菌毒素,痕量残留即对食品安全与人体健康构成严重威胁。本研究通过在MXenes纳米片上锚定银纳米颗粒(silver nanoparticles,Ag NPs),成功制备了Ag NPs/MXenes复合材料,并将其作为鲁米诺-过氧化氢(Luminol-H2O2)电化学发光体系中的共反应促进剂,显著增强了电化学发光(electrochemiluminescence,ECL)信号的稳定性和强度。以此材料为传感基底,结合CRISPR/Cas12a系统,构建了一种基于ECL-共振能量转移(resonance energy transfer,RET)的“关-开”型AFB1传感器。在目标物AFB1存在条件下,适配体可特异性识别并结合AFB1,释放激活链,从而启动CRISPR/Cas12a反式切割活性,通过适配体调控的Cas12a激活过程,实现了对AFB1的高灵敏定量分析。该传感器在1 pg/mL~100 ng/mL质量浓度范围内呈现良好的线性关系,检测限为0.4 pg/mL。实际样品检测结果表明该方法具有良好的适用性,为AFB1污染的早期监控提供了一种高效的即时检测技术。

关键词: 银纳米颗粒/MXenes;黄曲霉毒素B1;电化学发光传感器;快速检测;CRISPR/Cas12a

Abstract: Aflatoxin B1 (AFB1) is the most toxic member of the aflatoxin family, which, even at trace levels, poses a serious threat to food safety and human health. In this study, a composite material designated Ag NPs/MXenes was successfully prepared by anchoring silver nanoparticles (Ag NPs) onto MXene nanosheets. This material served as an efficient co-reaction accelerator in the Luminol-H2O2 electrochemiluminescence (ECL) system, significantly enhancing both the stability and intensity of the ECL signal. Using Ag NPs/MXenes as the sensing substrate and integrating it with the CRISPR/Cas12a system, an ECL resonance energy transfer (ECL-RET)-based “off-on” switch-type biosensor was constructed for the detection of AFB1. In the presence of the target AFB1, the aptamer specifically binds to AFB1, resulting in the release of an activator strand that triggers the trans‑cleavage activity of CRISPR/Cas12a. The aptamer‑regulated activation of Cas12a enabled highly sensitive quantification of AFB1. The sensor exhibited a good linear response over the concentration range of 1 pg/mL to 100 ng/mL, with a detection limit as low as 0.4 pg/mL. Its application in real samples demonstrated satisfactory applicability. This sensor offers an efficient point-of-care testing (POCT) strategy for the early monitoring of AFB1 contamination.

Key words: silver nanoparticles/MXenes; aflatoxin B1; electrochemiluminescence sensor; rapid detection; CRISPR/Cas12a

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