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A Highly Sensitive on-off Time-Resolved Phosphorescence Sensor Based on Aptamer Functionalized Magnetite Nanoparticles for Cadmium Detection in Food Samples

机译:基于适体官能化磁铁矿纳米粒子的高敏感性开关时间分辨磷光传感器用于食品样品中的镉检测

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摘要

Cadmium contamination is a severe threat to food safety. Therefore, the development of sensitive and selective cadmium detection strategies is urgently required. The elimination of background autofluorescence generated from the food matrix is critical to the optical assay for cadmium detection. Herein, a time-resolved phosphorescence sensor based on an “on-off” strategy was developed for cadmium determination in food samples. The phosphorescence nanoparticles were used as a luminous material to minimize the interference of background autofluorescence. The cadmium-binding aptamer was immobilized onto the magnetic beads and combined with a black hole quencher 1 (BHQ1) with complementary DNA as the target recognition element. With the presence of cadmium, the cadmium-binding aptamer bound to cadmium specifically and resulted in the release of BHQ1. The free BHQ1 remained in the solution after magnetic separation and quenched the phosphorescence. The phosphorescence intensity was negatively related to the concentration of cadmium. Under optimal conditions, the time-resolved phosphorescence sensor showed a linear response to cadmium concentration within a range from 0.05 to 5 ng mL−1 and with a detection limit of 0.04 ng mL−1. This “on-off” time-resolved phosphorescence sensor was successfully applied for cadmium detection in spring water and clam samples, which provided a rapid and straightforward method.
机译:镉污染是对食品安全的严重威胁。因此,迫切需要开发敏感和选择性的镉检测策略。从食物基质产生的消除背景自发荧光对于镉检测的光学测定是至关重要的。这里,开发了基于“开场”策略的时间分辨的磷光传感器用于食物样品中的镉测定。磷光纳米颗粒用作发光材料,以最小化背景自发荧光的干扰。将镉结合的适体固定在磁珠上并与黑洞猝灭剂1(BHQ1)与互补DNA合并,作为目标识别元件。通过存在镉,特异性地与镉结合的镉结合适体,导致BHQ1的释放。磁性分离后,可自由的BHQ1在溶液中并淬灭磷光。磷光强度与镉的浓度负相关。在最佳条件下,时间分离的磷光传感器显示对镉浓度的线性响应在0.05至5ng ml-1的范围内,并且检测限为0.04ng ml-1。该“开关”时间分离的磷光传感器成功应用于弹簧水和蛤样中的镉检测,这提供了一种快速和直接的方法。

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