Simultaneous Lateral Flow Immunoassay for Multi-Class Chemical Contaminants in Maize and Peanut with One-Stop Sample Preparation.
Du WangJianguo ZhuZhaowei ZhangQi ZhangWen ZhangLi YuJun JiangXiaomei ChenXuefang WangPeiwu LiPublished in: Toxins (2019)
Multi-class chemical contaminants, such as pesticides and mycotoxins, are recognized as the major risk factors in agro products. It is thus necessary to develop rapid and simple sensing methods to fulfill the on-site monitoring of multi-class chemical contaminants with different physicochemical properties. Herein, a lateral flow immunoassay via time-resolved fluorescence was developed for the rapid, on-site, simultaneous, and quantitative sensing aflatoxin B₁ (AFB₁), zearalenone (ZEA), and chlorothalonil (CTN) in maize and peanut. The sample preparation was optimized to a single step, combining the grinding and extraction. Under optimal conditions, the sensing method lowered the limits of detection (LOD) to 0.16, 0.52, and 1.21 µg/kg in maize and 0.18, 0.57, and 1.47 µg/kg in peanut with an analytical range of 0.48⁻20, 1.56⁻200, and 3.63⁻300 µg/kg for AFB₁, ZEA and CTN, respectively. The protocol could be completed within 15 min, including sample preparation and lateral flow immunoassay. The recovery range was 83.24⁻110.80%. An excellent correlation was observed between this approach and high-performance liquid chromatography-tandem mass spectrometry (HPLC-MS/MS) for mycotoxins and gas chromatography-tandem mass spectrometry (GC-MS/MS) for pesticide in maize and peanut. This work could be applied in on-site multi-class sensing for food safety.
Keyphrases
- gas chromatography
- tandem mass spectrometry
- liquid chromatography tandem mass spectrometry
- simultaneous determination
- solid phase extraction
- ultra high performance liquid chromatography
- ms ms
- molecularly imprinted
- high performance liquid chromatography
- liquid chromatography
- mass spectrometry
- high resolution mass spectrometry
- gas chromatography mass spectrometry
- high resolution
- risk factors
- loop mediated isothermal amplification
- drinking water
- sensitive detection
- label free
- risk assessment
- single molecule
- human health
- quantum dots
- real time pcr