Shao Shibei, Zhou Xuping, Dou Leina, Bai Yuchen, Mi Jiafei, Yu Wenbo, Zhang Suxia, Wang Zhanhui, Wen Kai
Beijing Laboratory for Food Quality and Safety, Beijing Key Laboratory of Detection Technology for Animal-Derived Food Safety, College of Veterinary Medicine, China Agricultural University, Beijing 100193, China.
Foods. 2021 Dec 14;10(12):3106. doi: 10.3390/foods10123106.
Albendazole (ABZ) is one of the benzimidazole anthelmintics, and the overuse of ABZ in breeding industry can lead to drug resistance and a variety of toxic effects in humans. Since the residue markers of ABZ are the sum of ABZ and three metabolites (collectively referred to as ABZs), albendazole-sulfone (ABZSO), albendazole-sulfoxide (ABZSO), and albendazole-2-amino-sulfone (ABZNHSO), an antibody able to simultaneously recognize ABZs with high affinity is in urgent need to develop immunoassay for screening purpose. In this work, an unreported hapten, 5-(propylthio)-1H-benzo[d]imidazol-2-amine, was designed and synthesized, which maximally exposed the characteristic sulfanyl group of ABZ to the animal immune system to induce expected antibody. One monoclonal antibody (Mab) that can simultaneously detect ABZs was obtained with IC values of 0.20, 0.26, 0.77, and 10.5 μg/L for ABZ, ABZSO, ABZSO, and ABZNHSO in ic-ELISA under optimized conditions respectively, which has been never achieved in previous reports. For insight into the recognition profiles of the Mab, we used computational chemistry method to parameterize cross-reactive molecules in aspects of conformation, electrostatic fields, and hydrophobicity, revealing that the hydrophobicity and conformation of characteristic group of molecules might be the key factors that together influence antibody recognition with analytes. Furthermore, the practicability of the developed ic-ELISA was verified by detecting ABZs in spiked milk, beef, and liver samples with recoveries of 60% to 108.8% and coefficient of variation (CV) of 1.0% to 15.9%.
阿苯达唑(ABZ)是苯并咪唑类驱虫药之一,在养殖业中过度使用ABZ会导致耐药性以及对人类产生多种毒性作用。由于ABZ的残留标志物是ABZ及其三种代谢物(统称为ABZs)的总和,即阿苯达唑砜(ABZSO)、阿苯达唑亚砜(ABZSO)和阿苯达唑-2-氨基砜(ABZNHSO),因此迫切需要开发一种能够同时高亲和力识别ABZs的抗体,用于免疫分析筛选。在本研究中,设计并合成了一种未报道的半抗原5-(丙硫基)-1H-苯并[d]咪唑-2-胺,其最大限度地将ABZ的特征硫烷基暴露于动物免疫系统以诱导产生预期抗体。获得了一种能够同时检测ABZs的单克隆抗体(Mab),在优化条件下,其在间接竞争ELISA(ic-ELISA)中对ABZ、ABZSO、ABZSO和ABZNHSO的IC值分别为0.20、0.26、0.77和10.5μg/L,这在以往报道中从未实现过。为深入了解该Mab的识别特征,我们采用计算化学方法从构象、静电场和疏水性等方面对交叉反应分子进行参数化,结果表明分子特征基团的疏水性和构象可能是共同影响抗体与分析物识别的关键因素。此外,通过检测添加了ABZs的牛奶、牛肉和肝脏样品,验证了所开发的ic-ELISA的实用性,回收率为60%至108.8%,变异系数(CV)为1.0%至15.9%。