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A simple, highly sensitive colorimetric immunosensor for the detection of alternariol monomethyl ether in fruit by non-aggregated gold nanoparticles

机译:通过非聚集的金纳米粒子在果实中检测果实中简单,高敏的比色免疫传感器

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摘要

Alternariol monomethyl ether (AME) is one of the major Alternaria mycotoxins present in a wide range of fruits, vegetables, grains, and their products, and possesses the properties of mutagenicity and carcinogenicity. In this study, a simple, rapid, and highly sensitive colorimetric immunosensor based on magnetic nanoparticles (MNPs) was firstly developed for the detection of AME in fruit by nonaggregated gold nanoparticles (GNPs). AME-BSA-Fe3O4 MNP conjugates and free AME molecules in samples competitively bind with monoclonal antibody (mAb)-GNP conjugates. After magnetic separation, the UV absorbance of the nonaggregated GNP supernatant was measured directly. The absorption intensity was proportional to the concentration of AME in the sample. Carboxyl-group-modified AME, AME-bovine serum albumin (BSA) conjugates, anti-AME mAbs, AME-BSA-Fe3O4 MNP conjugates, and mAb-GNP conjugates were prepared and characterized. The effect of GNP sizes (16, 24, and 40 nm) on the colorimetric determination of AME was studied. Under optimized conditions, the limit of detection and the linear range for AME were 0.16 ng/mL and 0.08-0.48 ng/mL, respectively. Moreover, the colorimetric immunosensor developed has lower cross-reactivity with AME analogues. The recoveries of spiked fruits ranged from 80.6% to 90.7%. The colorimetric immunosensor developed provides a promising method for simple, rapid, highly sensitive, and highly specific detection of other mycotoxins in the field of food safety.
机译:单甲醇单甲基醚(AME)是各种各样的水果,蔬菜,谷物及其产品中存在的主要alterararia mycotoxins之一,并且具有诱变和致癌性的性质。在该研究中,首先开发出基于磁性纳米颗粒(MNP)的简单,快速和高敏感的比色免疫传感器用于通过非聚糖的金纳米颗粒(GNP)检测果实中的ame。 AME-BSA-FE3O4 MNP缀合物和样品中的游离AME分子与单克隆抗体(MAB)-CNP缀合物竞争地结合。在磁性分离后,直接测量非聚合的GNP上清液的UV吸光度。吸收强度与样品中ame的浓度成比例。制备羧基 - 改性ame,氨基牛血清白蛋白(BSA)缀合物,抗AME mAb,AME-BSA-Fe3O4 MNP缀合物和MAB-GNP缀合物。研究了GNP尺寸(16,24和40nm)对ame的比色测定的影响。在优化条件下,ame的检测极限和线性范围分别为0.16ng / ml和0.08-0.48ng / ml。此外,显色免疫传感器与AME类似物的交叉反应性较低。尖刺果实的回收率范围从80.6%到90.7%。比色免疫传感器开发为简单,快速,高度敏感,对食品安全领域的其他霉菌毒素进行简单,快速,高度敏感和高度特异性的方法提供了有希望的方法。

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