A novel self-aggregated gold nanoparticles based on sensitive immunochromatographic assays for highly detection of opium poppy in herbal teas.

Food Chem

Guangdong Provincial Key Laboratory of Food Quality and Safety / National-Local Joint Engineering Research Center for Machining and Safety of Livestock and Poultry Products, South China Agricultural University, Guangzhou 510642, China. Electronic address:

Published: October 2022

AI Article Synopsis

  • Concerns about opium poppy abuse in food lead to a need for effective monitoring due to serious health risks.
  • Researchers developed a cost-effective method using aggregated gold nanoparticles (AGNPs) in lateral flow immunoassay (LFIA) for detecting opium poppy in herbal teas, along with a contrasting method using time-resolved fluorescent microspheres (TRFMs).
  • The AGNPs-LFIA showed high sensitivity and precision with quick results, demonstrating a strong alternative for rapid detection of drug abuse.

Article Abstract

Opium poppy abused in food has aroused public concerns due to its serious side effects. Effective monitoring is essential to fight the abuse crisis. Herein, we synthesized an easily prepared, affordable, accessible highly aggregated gold nanoparticles (AGNPs) performing in lateral flow immunoassay (LFIA) for detection opium poppy in herbal teas. Simultaneously, a LFIA based ontime-resolved fluorescent microspheres (TRFMs) was developed as contrastive method. In this study, morphine (MOR), codeine (COD) and thebaine (THE) were as the specific recognition markers of opium poppy. Results demonstrated the quantitative limits of detection were 0.0049/0.0053/0.084, 0.034/0.037/0.37 ng mL for AGNPs/TRFMs-LFIA, respectively. The recoveries were 95%-107.5%/91%-106.7% with coefficient of variation was 1.6%-6.6%/1.8%-7.2%, indicating excellent accuracy and precision. Parallel experiments among AGNPs/TRFMs-LFIA and LC-MS/MS analysis showed good correlation. Overall, AGNPs-LFIA executed quantitative analysis within 15 min on the basis of simple treatment while providing a rapid and sensitive analysis strategy for illegal drugs abused.

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Source
http://dx.doi.org/10.1016/j.foodchem.2022.133188DOI Listing

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