Di Nardo F, Anfossi L, Giovannoli C, Passini C, Goftman V V, Goryacheva I Y, Baggiani C
Department of Chemistry, University of Turin, Via Giuria, 5, I-10125 Turin, Italy.
Department of Chemistry, University of Turin, Via Giuria, 5, I-10125 Turin, Italy.
Talanta. 2016 Apr 1;150:463-8. doi: 10.1016/j.talanta.2015.12.072. Epub 2015 Dec 28.
A fluorescent immunochromatographic strip test (ICST) based on the use of Quantum Dots (QD) was developed and applied to detect fumonisins in maize samples. A limit of detection for fumonisin B1 of 2.8 µg L(-1) was achieved, with an analytical working range of 3-350 µg L(-1), corresponding to 30-3500 µg kg(-1) in maize flour samples, according with the extraction procedure. The time required to perform the analysis was 22 min, including sample preparation. Recovery values in the range from 91.4% to 105.4% with coefficients of variation not exceeding 5% were obtained for fortified and naturally contaminated maize flour samples. To evaluate the possible improvements due to the use of QD for ICST technology, we performed a direct comparison of the proposed QD-ICST to a gold nanoparticles- and a chemiluminescent-ICST previously developed for fumonisins detection, in which the same immunoreagents were employed.
开发了一种基于量子点(QD)的荧光免疫层析试纸条检测法(ICST),并将其应用于检测玉米样品中的伏马毒素。伏马毒素B1的检测限达到2.8 µg L(-1),分析工作范围为3 - 350 µg L(-1),根据提取程序,这相当于玉米粉样品中30 - 3500 µg kg(-1)。进行分析所需的时间为22分钟,包括样品制备。对于加标和天然污染的玉米粉样品,回收率在91.4%至105.4%之间,变异系数不超过5%。为了评估使用量子点用于ICST技术可能带来的改进,我们将所提出的量子点 - ICST与先前开发的用于伏马毒素检测的金纳米颗粒和化学发光ICST进行了直接比较,其中使用了相同的免疫试剂。