Guangdong Provincial Key Laboratory of Food Quality and Safety, South China Agricultural University, Guangzhou 510642, China.
Institute of Jiangxi Oil-Tea Camellia, Jiujiang University, Jiujiang 332000, China.
Biosensors (Basel). 2023 May 25;13(6):577. doi: 10.3390/bios13060577.
The advantages of genetic modification and preferable physicochemical qualities make nanobody (Nb) easy to develop a sensitive and stable immunosensor platform. Herein, an indirect competitive chemiluminescence enzyme immunoassay (ic-CLEIA) based on biotinylated Nb was established for the quantification of diazinon (DAZ). The anti-DAZ Nb, named Nb-EQ1, with good sensitivity and specificity, was obtained from an immunized library via a phage display technique, where the molecular docking results indicated that the hydrogen bond and hydrophobic interactions between DAZ and complementarity-determining region 3 and framework region 2 in Nb-EQ1 played a critical role in the Nb-DAZ affinity processes. Subsequently, the Nb-EQ1 was further biotinylated to generate a bi-functional Nb-biotin, and then an ic-CLEIA was developed for DAZ determination via signal amplification of the biotin-streptavidin platform. The results showed that the proposed method based on Nb-biotin had a high specificity and sensitivity to DAZ, with a relative broader linear range of 0.12-25.96 ng/mL. After being 2-folds dilution of the vegetable samples matrix, the average recoveries were 85.7-113.9% with a coefficient of variation of 4.2-19.2%. Moreover, the results for the analysis of real samples by the developed ic-CLEIA correlated well with that obtained by reference method GC-MS (R ≥ 0.97). In summary, the ic-CLEIA based on biotinylated Nb-EQ1 and streptavidin recognition demonstrated itself to be a convenient tool for the quantification of DAZ in vegetables.
纳米抗体(Nb)具有遗传修饰的优势和较好的物理化学性质,使其易于开发出敏感且稳定的免疫传感器平台。在此,建立了一种基于生物素化 Nb 的间接竞争化学发光酶免疫分析(ic-CLEIA),用于定量检测敌敌畏(DAZ)。通过噬菌体展示技术从免疫文库中获得了具有良好灵敏度和特异性的抗 DAZ Nb,命名为 Nb-EQ1。分子对接结果表明,DAZ 与 Nb-EQ1 的互补决定区 3 和框架区 2 之间的氢键和疏水相互作用在 Nb-DAZ 亲和力过程中起着关键作用。随后,将 Nb-EQ1 进一步生物素化,生成双功能 Nb-生物素,然后通过生物素-链霉亲和素平台的信号放大,开发用于 DAZ 测定的 ic-CLEIA。结果表明,基于 Nb-生物素的方法对 DAZ 具有较高的特异性和灵敏度,相对较宽的线性范围为 0.12-25.96ng/mL。经过蔬菜样品基质 2 倍稀释后,平均回收率为 85.7%-113.9%,变异系数为 4.2%-19.2%。此外,通过所开发的 ic-CLEIA 分析实际样品的结果与参考方法 GC-MS (R≥0.97)的结果相关性良好。总之,基于生物素化 Nb-EQ1 和链霉亲和素识别的 ic-CLEIA 证明是一种用于定量检测蔬菜中 DAZ 的便捷工具。
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