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基于纳米孔的无标记 CRISPR/Cas12a 系统,用于玉米赤霉烯酮的便携和超灵敏检测。

A nanopore-based label-free CRISPR/Cas12a system for portable and ultrasensitive detection of zearalenone.

机构信息

School of Food Science and Engineering, Shaanxi University of Science and Technology, Xi'an, 710021, China.

School of Food Science and Engineering, Shaanxi University of Science and Technology, Xi'an, 710021, China.

出版信息

Anal Chim Acta. 2024 Nov 22;1330:343280. doi: 10.1016/j.aca.2024.343280. Epub 2024 Sep 25.

Abstract

BACKGROUND

Food safety has become a serious global concern. Therefore, there is a need for effective detection technologies in this field. Currently, the development of effective on-site detection techniques is extremely important for food safety. However, the traditional on-site detection methods currently lack effective signal amplification. Herein, the aim of this study was to construct a nanopore-based label-free CRISPR/Cas12a system for the detection of Zearalenone (ZEN). The method is expected to be highly sensitive for portable detection of ZEN in food.

RESULTS

The proposed strategy was mainly involved three steps, including the displacement of the target DNA, the triggering of the cleavage of hairpin DNA probes (probes 1) by the trans-cleavage of CRISPR/Cas12a, and the generation of a measurable nanopore current signal. The probes 1 and DNA after the cleavage of probes 1 (probes 2) produce different characteristic nanopore signals as they pass through the nanopore. The established method achieved a low limit of detection (LOD) of 6.52 fM for ZEN and a wide liner range under optimized conditions. Furthermore, the practical applicability of this method was verified in real maize samples and showed good recoveries (90.68-101.98 %) and low relative standard deviations (RSD) (9.21-9.72 %). Therefore, this method is a promising option for rapid and ultrasensitive detection of ZEN.

SIGNIFICANCE AND NOVELTY

The study presented a portable nanopore-based CRISPR/Cas12a signal amplification detection system for the detection of ZEN in food, which had a low LOD and the advantages of rapid, portability, and on-site detection potential. In conclusion, the method presented a promising prospect and universal platform for the detection of ZEN and other mycotoxins, offering a novel insight into on-site food safety detection.

摘要

背景

食品安全已成为一个严重的全球性问题。因此,该领域需要有效的检测技术。目前,开发有效的现场检测技术对于食品安全至关重要。然而,传统的现场检测方法目前缺乏有效的信号放大。本研究旨在构建一种基于纳米孔的无标记 CRISPR/Cas12a 系统,用于检测玉米赤霉烯酮 (ZEN)。该方法有望实现对食品中 ZEN 的高灵敏度便携式检测。

结果

该策略主要涉及三个步骤,包括目标 DNA 的置换、CRISPR/Cas12a 的反式切割触发发夹 DNA 探针 (探针 1) 的切割以及可测量的纳米孔电流信号的产生。探针 1 和探针 1 切割后的 DNA (探针 2) 在穿过纳米孔时会产生不同的特征纳米孔信号。在优化条件下,该方法对 ZEN 的检测限 (LOD) 低至 6.52 fM,线性范围较宽。此外,该方法在实际玉米样品中的实际应用得到了验证,回收率良好 (90.68-101.98 %),相对标准偏差 (RSD) 低 (9.21-9.72 %)。因此,该方法是一种快速、超灵敏检测 ZEN 的有前途的选择。

意义和新颖性

本研究提出了一种用于检测食品中 ZEN 的便携式基于纳米孔的 CRISPR/Cas12a 信号放大检测系统,具有低 LOD 和快速、便携、现场检测潜力等优点。总之,该方法为 ZEN 及其他真菌毒素的检测提供了有前景的前景和通用平台,为现场食品安全检测提供了新的思路。

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