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开发用于检测啶虫脒的DNA逻辑门纳米传感平台。

Developing a DNA logic gate nanosensing platform for the detection of acetamiprid.

作者信息

Xi Sunfan, Wang Luhui, Cheng Meng, Hu Mengyang, Liu Rong, Dong Yafei

机构信息

Department of Life Science, Shaanxi Normal University Xi'an 710119 China

Department of Computer Science, Shaanxi Normal University Xi'an 710119 China.

出版信息

RSC Adv. 2022 Sep 27;12(42):27421-27430. doi: 10.1039/d2ra04794b. eCollection 2022 Sep 22.

Abstract

This paper reports a novel fluorescence and colorimetric dual-signal-output DNA aptamer based sensor for the detection of acetamiprid residue. Acetamiprid is a new systemic broad-spectrum insecticide with high insecticidal efficiency that is widely used worldwide, but there is a risk of adverse neurological reactions in humans and animals. The dual-mode output principle designed in this paper, consisting of a fluorescence signal and colorimetric signal, is based on the relevant reaction of the special domain of a G-quadruplex, bidding farewell to a classical single-signal output, with a target-recognition cycle used to complete signal amplification through a hybridization chain reaction. Upgraded detection sensitivity and the qualitative and semi-quantitative detection of acetamiprid are achieved based on the fluorescence signal output and visual discrimination observations during colorimetric experiments. This model was applied to the determination of acetamiprid residue in fruits and vegetables. The dual-detection platform further reduced systematic error, with a detection limit of 27.7 pM. When applied in a comparative detection study using three different pesticides, the system shows excellent discrimination specificity and it performs well in actual sample detection and has a fast response time. Designing DNA logic gates that operate in the presence of targets and molecular-switch-based detection platforms also involves the intersection of biology and computational modeling, providing new ideas for biological platforms.

摘要

本文报道了一种用于检测啶虫脒残留的新型基于DNA适配体的荧光和比色双信号输出传感器。啶虫脒是一种新型内吸性广谱杀虫剂,杀虫效率高,在全球广泛使用,但对人和动物存在神经不良反应风险。本文设计的双模式输出原理,由荧光信号和比色信号组成,基于G-四链体特殊结构域的相关反应,告别了传统的单信号输出,采用目标识别循环通过杂交链式反应完成信号放大。基于荧光信号输出以及比色实验中的视觉判别观察,实现了啶虫脒检测灵敏度的提升以及定性和半定量检测。该模型应用于水果和蔬菜中啶虫脒残留的测定。双检测平台进一步降低了系统误差,检测限为27.7 pM。当应用于三种不同农药的对比检测研究时,该系统显示出优异的鉴别特异性,在实际样品检测中表现良好且响应时间快。设计在目标存在时运行的DNA逻辑门以及基于分子开关的检测平台还涉及生物学与计算建模的交叉,为生物平台提供了新思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ac8/9513691/09bddde31894/d2ra04794b-f1.jpg

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