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VHH Phage-BasedCompetitive Real-Time Immuno-PolymeraseChain Reaction for Ultrasensitive Detection of Ochratoxin A in Cereal

机译:基于VHH噬菌体竞争性实时免疫聚合酶链式反应超敏检测谷物中的ch曲霉毒素A

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摘要

Phage display-mediated immuno-polymerase chain reaction (PD-IPCR) is an ultrasensitive detection technology that combines the advantages of immuno-PCR and phage display. The phage particle, which displayed antibody fragments including single-chain fragment variable (scFv), variable domain of heavy-chain antibodies (VHH), and antigen-binding fragment (Fab) on the surface can be directly used in IPCR, supplying both the detection antibody and deoxyribonucleic acid (DNA) template. In this work, we used ochratoxin A (OTA) as a model system to study the capacity of PD-IPCR in the detection of toxic small molecular weight compounds, especially mycotoxins. An alpaca-derived VHH library was constructed and subjected to four cycles of panning. In total, 16 clones with four unique sequences were selected by competitive binding with OTA. The clone VHH-28 resulted in the lowest 50% inhibitory concentration of 0.31 ng/mL in the phage enzyme-linked immunosorbent assay (ELISA) and was selected to develop the VHH phage-based real-time immuno-PCR (RT-IPCR). The detection limit of the VHH phage-based RT-IPCRwas 3.7 pg/L, with a linear range of 0.01–1000 pg/mL. Thismethod was compared with conventional ELISA, and validation resultsindicated the reliability of VHH phage-based RT-IPCR in the detectionof OTA in cereal samples. This study provides a new idea for the ultrasensitivedetection of mycotoxins and other toxic small molecular weight compounds.
机译:噬菌体展示介导的免疫聚合酶链反应(PD-IPCR)是结合了免疫PCR和噬菌体展示优势的超灵敏检测技术。可以在IPCR中直接使用在噬菌体颗粒上显示包括单链片段可变(scFv),重链抗体的可变域(VHH)和抗原结合片段(Fab)在内的抗体片段,检测抗体和脱氧核糖核酸(DNA)模板。在这项工作中,我们使用曲霉毒素A(OTA)作为模型系统来研究PD-IPCR在检测有毒小分子量化合物(尤其是霉菌毒素)中的能力。构建了羊驼来源的VHH库,并进行了四个淘选循环。通过与OTA竞争性结合,总共选择了具有四个独特序列的16个克隆。克隆VHH-28在噬菌体酶联免疫吸附测定(ELISA)中产生的最低50%抑制浓度为0.31 ng / mL,并被选择用于开发基于VHH噬菌体的实时免疫PCR(RT-IPCR) 。基于VHH噬菌体的RT-IPCR的检测限为3.7 pg / L,线性范围为0.01–1000 pg / mL。这个方法与常规ELISA进行比较,并验证结果表明基于VHH噬菌体的RT-IPCR在检测中的可靠性谷物样品中的OTA含量。这项研究为超敏反应提供了新思路。检测霉菌毒素和其他有毒的小分子量化合物。

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