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Nanobody-based enzyme immunoassay for ochratoxin A in cereal with high resistance to matrix interference

机译:基于纳米抗体的谷物中曲霉毒素A的酶免疫分析法对基质干扰具有高抗性

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摘要

A sensitive indirect competitive nanobody-based enzyme linked immunosorbent assay (Nb-ELISA) for ochratoxin A (OTA) with high resistance to cereal matrix interference was developed. Nanobodies against OTA (Nb15, Nb28, Nb32, Nb36) were expressed in E. coli cells and their thermal stabilities were compared with that of an OTA-specific monoclonal antibody 6H8. All nanobodies could still retain their antigen-binding activity after exposure to temperature 95 °C for 5 min or to 90 °C for 75 min. Nb28 that exhibited the highest sensitivity in ELISA was selected for further research. An indirect competitive ELISA based on Nb28 was developed for OTA, with an IC50 of 0.64 ng/mL and a linear range (IC20-IC80) of 0.27–1.47 ng/mL. Cereal samples were analyzed following a 2.5 fold dilution of sample extracts, showing the good resistance to matrix interference of the Nb-ELSIA. The recovery of spiked cereal samples (rice, oats, barley) ranged from 80% to 105% and the Nb-ELISA results of OTA content in naturally contamined samples were in good agreement with those determined by a commercial ELISA kit. The results indicated the reliablity of nanobody as a promising immunoassay reagent for detection of mycotoxins in food matrix and its potential in biosensor development.
机译:开发了一种对曲霉毒素A(OTA)具有高抗谷物基质干扰能力的灵敏的间接竞争性基于纳米抗体的酶联免疫吸附试验(Nb-ELISA)。针对OTA的纳米抗体(Nb15,Nb28,Nb32,Nb36)在大肠杆菌细胞中表达,并将其热稳定性与OTA特异性单克隆抗体6H8进行了比较。在暴露于95°C的温度5分钟或暴露于90°C的温度75分钟后,所有纳米抗体仍可以保留其抗原结合活性。选择在ELISA中显示出最高灵敏度的Nb28进行进一步研究。针对OTA开发了一种基于Nb28的间接竞争ELISA,IC50为0.64 ng / mL,线性范围(IC20-IC80)为0.27-1.47 ng / mL。在对样品提取物进行2.5倍稀释后,对谷物样品进行了分析,显示了对Nb-ELSIA的良好的抗基质干扰性。加标谷物样品(大米,燕麦,大麦)的回收率在80%至105%之间,自然污染样品中OTA含量的Nb-ELISA结果与商业ELISA试剂盒的结果吻合良好。结果表明,纳米抗体作为检测食品基质中霉菌毒素的有前途的免疫测定试剂的可靠性及其在生物传感器开发中的潜力。

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