首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Phage-free peptide ELISA for ochratoxin A detection based on biotinylated mimotope as a competing antigen
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Phage-free peptide ELISA for ochratoxin A detection based on biotinylated mimotope as a competing antigen

机译:基于生物素化的模拟表位作为竞争性抗原的曲霉毒素A的无噬菌体肽ELISA检测

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摘要

To perform the biopanning of a mimotope peptide with reduced affinity to anti-ochratoxin A (OTA) monoclonal antibodies (mAbs), we executed two improved biopanning approaches with a commercial 7-mer peptide library. In the first approach, anti-mouse IgG antibodies were used to erect the anti-OTA mAbs; in the second approach, an ultralow OTA concentration (0.1 ng/mL) was used to perform the competitive elution of phage particles. After the fourth round of biopanning was completed, 30 identified clones were positive phage particles; of these phage particles, 16 exhibited strong competitive inhibition with a low OTA concentration of 0.1 ng/mL. DNA sequencing results revealed that the 16 phage particles represented six different peptide sequences. Among these particles, the phage particle with a peptide sequence of "GMVQTIF" showed the highest sensitivity to OTA detection. The biotinylated 12-mer peptide "GMVQTIF-GGGSK-biotin" was designed as a competing antigen to develop a competitive peptide ELISA. Under the optimal parameters, the proposed peptide ELISA with the biotinylated 12-mar peptide as a competing antigen exhibited good dynamic linear detection for OTA in the range of 0.005 ng/mL0.2 ng/mL with a detection limit of 0.001 ng/mL. The median inhibition concentration of OTA was 0.024 ng/mL (n=6), which is approximately fivefold more efficient as a competing antigen than the OTAHRP conjugates. Reaction kinetics revealed that the biotinylated 12-mer peptide exhibited lower affinity to anti-OTA mAbs than the conventional chemical OTA antigen. The practicality of the proposed peptide ELISA was compared with a conventional ELISA method. In summary, this study demonstrated a novel concept of the development of phage-free peptide ELISA for the detection of OTA by using a biotinylated mimotope peptide as a competing antigen. This novel strategy can be applied to sensitively detect other toxic small molecules during food safety monitoring. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了执行与抗-曲霉毒素A(OTA)单克隆抗体(mAb)亲和力降低的模拟表位多肽的生物淘选,我们使用商业7-mer肽库执行了两种改进的生物淘选方法。在第一种方法中,使用抗小鼠IgG抗体来构建抗OTA单抗。在第二种方法中,使用超低OTA浓度(0.1 ng / mL)进行竞争性洗脱噬菌体颗粒。第四轮生物淘选完成后,鉴定出的30个克隆为阳性噬菌体颗粒。在这些噬菌体颗粒中,有16种表现出很强的竞争抑制作用,而OTA浓度为0.1 ng / mL时很低。 DNA测序结果显示16个噬菌体颗粒代表6个不同的肽序列。在这些颗粒中,具有“ GMVQTIF”肽序列的噬菌体颗粒显示出对OTA检测的最高灵敏度。生物素化的12聚体肽“ GMVQTIF-GGGSK-生物素”被设计为竞争性抗原以开发竞争性肽ELISA。在最佳参数下,拟议的以生物素化的12-mar肽作为竞争性抗原的肽ELISA在0.005 ng / mL0.2 ng / mL的范围内显示出对OTA的良好动态线性检测,检测极限为0.001 ng / mL。 OTA的中位抑制浓度为0.024 ng / mL(n = 6),作为竞争性抗原的效率是OTAHRP共轭物的约五倍。反应动力学表明,与常规化学OTA抗原相比,生物素化的12-聚体肽对抗OTA mAb的亲和力更低。所提出的肽ELISA的实用性与常规ELISA方法进行了比较。总而言之,这项研究证明了通过使用生物素化的模拟表位肽作为竞争性抗原来开发用于检测OTA的无噬菌体肽ELISA的新概念。这种新颖的策略可用于在食品安全监控过程中灵敏地检测其他有毒的小分子。 (C)2015 Elsevier B.V.保留所有权利。

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