4.8 Article

Ultrasensitive and rapid colorimetric detection of paraquat via a high specific VHH nanobody

期刊

BIOSENSORS & BIOELECTRONICS
卷 205, 期 -, 页码 -

出版社

ELSEVIER ADVANCED TECHNOLOGY
DOI: 10.1016/j.bios.2022.114089

关键词

Paraquat; Variable domain of heavy chain antibody & nbsp;& nbsp;(VHH) ; Time-resolved fluorescence & nbsp;& nbsp;immunochromatographic assay (TRFICA) ; Molecular docking; Ultrasensitive detection

资金

  1. National Key Research and Devel-opment of China [2018YFC1602904]
  2. Guangdong Basic and Applied Basic Research Foundation [2019B1515210025, 2020A1515011238, 2018B030314005]
  3. Key Scientific Research Projects of Guang-dong Provincial Universities and Colleges [2018KZDXM011]

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The study developed an ultrasensitive fluorescence immunochromatographic assay strip for rapid and quantitative detection of paraquat. The strip showed high sensitivity and stability, and could be used for quantitative analysis with a strip reader and semi-quantitative analysis with the naked eye.
Rapid and quantitative detection of paraquat is crucial because of its high toxicity. Here, we developed an ultrasensitive time-resolved fluorescence immunochromatographic assay (TRFICA) strip based on our synthesized variable domain of heavy chain antibody (VHH, also called Nanobody) for paraquat detection. Briefly, the specific immunogen selected from six designed antigens was employed to immunize alpaca, and a high-efficiency capacity of 1.6 x 10(13) pfu mL(-1) phage display nanobody library was established for biopanning against paraquat. The selected nanobody exhibited high sensitivity (limit of detection (LOD) was 0.0090 ng mL(-1) and IC50 was 0.0588 ng mL(-1) in buffer) and stability to high temperatures and denaturants. The molecular docking results indicated that the pi-pi, cation-pi, and hydrogen bond interactions between paraquat and the pocket-like structures of complementarity-determining regions (CDRs) in VHH played a critical role in the antibody-paraquat recognition, competition, and affinity processes. The constructed TRFICA recognized paraquat through a quantitative analysis using the strip reader, and showed no cross-reactivity with other herbicides, and a semi-quantitative analysis using the naked eye. Notably, the potential practical applications of the TRFICA evaluated by performing a quantitative analysis of paraquat in food samples (vegetables, fruits, and grain products) and biological samples (blood and urine) showed a recovery rate range between 76.7% and 133.3% with inter-assay coefficient variation lower than 18.5%. The nanobody from phage display libraries was effective for small molecule recognition and detection, and it is a vital tool for immunoassay.

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