Kim Tai-Yong, Lim Min-Cheol, Lim Ji Won, Woo Min-Ah
Research Group of Food Safety and Distribution, Korea Food Research Institute (KFRI), Wanju, Korea.
Department of Food Science and Technology, Jeonbuk National University, Jeonju, Korea.
Biotechnol Bioprocess Eng. 2022;27(2):202-212. doi: 10.1007/s12257-021-0220-0. Epub 2022 Apr 22.
This study aimed to develop a label-free fluorescent aptasensor for the detection of diazinon (DZN) on a cyclic olefin copolymer (COC) substrate. The aptasensor design was based on rolling circle amplification (RCA) technology and the use of self-assembled copper nanoparticles (CuNPs). A dual-function (DF) probe, capable of binding to circular DNA and an aptamer, was designed and immobilized on a COC-bottom 96-well plate. An aptamer was used for selective recognition of DZN, and the specific site of the aptamer that strongly reacted with DZN was successfully identified using circular dichroism (CD) analysis. In presence of DZN, the aptamer and DZN formed a strong complex, thus providing an opportunity for hybridization of the DF probe and circular DNA, thereby initiating an RCA reaction. Repetitive poly thymine (T) sequence with a length of 30-mer, generated in the RCA reaction, served as a template for the synthesis of fluorescent copper nanoparticles, emitting an orange fluorescence signal (at approximately 620 nm) proportional to the amount of RCA product, within 10 min under UV irradiation. The CuNP fluorescence was imaged and quantified using an image analysis software. A linear correlation of the fluorescence signal was confirmed in the DZN concentration range of 0.1-3 ppm, with a detection limit of 0.15 ppm. Adoption of a label-free detection method, utilizing RCA and fluorescent CuNPs on COC substrates, reduced the need for complex equipment and requirements for DZN analysis, thereby representing a simple and rapid sensing method circumventing the limitations of current complex and labor-intensive methods.
The online version of this article (doi:10.1007/s12257-021-0220-0) contains supplementary material, which is available to authorized users.
本研究旨在开发一种用于在环烯烃共聚物(COC)基质上检测二嗪农(DZN)的无标记荧光适配体传感器。该适配体传感器的设计基于滚环扩增(RCA)技术和自组装铜纳米颗粒(CuNPs)的使用。设计了一种能够与环状DNA和适配体结合的双功能(DF)探针,并将其固定在COC底部的96孔板上。使用适配体对DZN进行选择性识别,并通过圆二色性(CD)分析成功鉴定了与DZN强烈反应的适配体的特定位点。在存在DZN的情况下,适配体与DZN形成强复合物,从而为DF探针与环状DNA的杂交提供了机会,进而引发RCA反应。在RCA反应中产生的长度为30聚体的重复聚胸腺嘧啶(T)序列用作合成荧光铜纳米颗粒的模板,在紫外线照射下10分钟内发出与RCA产物量成比例的橙色荧光信号(约620纳米)。使用图像分析软件对CuNP荧光进行成像和定量。在0.1 - 3 ppm的DZN浓度范围内确认了荧光信号的线性相关性,检测限为0.15 ppm。采用无标记检测方法,在COC基质上利用RCA和荧光CuNPs,减少了对复杂设备的需求以及对DZN分析的要求,从而代表了一种简单快速的传感方法,规避了当前复杂且劳动密集型方法的局限性。
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