Wang Xiaonan, Lu Qingpeng, Dou Leina, Liu Minggang, Li Peipei, Yu Wenbo, Yu Xuezhi, Wang Zhanhui, Wen Kai
College of Veterinary Medicine, China Agricultural University, Beijing Key Laboratory of Detection Technology for Animal Derived Food Safety, Beijing Laboratory for Food Quality and Safety, 100193 Beijing, People's Republic of China.
College of Veterinary Medicine, China Agricultural University, Beijing Key Laboratory of Detection Technology for Animal Derived Food Safety, Beijing Laboratory for Food Quality and Safety, 100193 Beijing, People's Republic of China.
Sci Total Environ. 2023 Feb 10;859(Pt 1):159941. doi: 10.1016/j.scitotenv.2022.159941. Epub 2022 Nov 5.
Long-term dietary exposure of aristolochic acids (AAs)-contaminated food proved to be one of the main culprits of Endemic Nephropathy, renal failure; and urothelial cancer. The antibodies utilized in immunoassays for AAs suffer from low affinity and failure of recognition to the family of AAs. This study, we prepared a broad-specificity monoclonal antibody (mAb) 5H5 with highly and uniform affinity for AAs by help of computational chemistry fully exposing the AAs common structures of methoxy and hydroxyl groups. The mAb 5H5 exhibited half inhibitory concentrations of AAA, AAB, AAC, AAD were 0.03, 0.06, 0.05, 0.03 ng/mL. To explain the broad-specificity profile of mAb 5H5, molecular docking was performed. Results shown that multiple conformations of AAs can be flexibly oriented in the spacious cavity of single-chain variable fragment antibody (scFv) 5H5 and the specific hydron bonds were formed by ASN62 and GLY64 of scFV 5H5 to the nitro group of AAs which gave an explanation of the high cross-reactivity of mAb 5H5. The ELISA based on the broad-specificity mAb 5H5with detection limits of 0.04-0.11 μg/kg and 0.02-0.06 μg/kg for four AAs in flour and soil samples, respectively. The study provided a promising method for the family of AAs in environmental and food samples.
长期食用受马兜铃酸(AAs)污染的食物被证明是地方性肾病、肾衰竭和尿路上皮癌的主要元凶之一。用于AAs免疫测定的抗体亲和力低,且无法识别AAs家族。在本研究中,我们借助计算化学方法,充分暴露AAs甲氧基和羟基的共同结构,制备了对AAs具有高亲和力且亲和力一致的广谱特异性单克隆抗体(mAb)5H5。mAb 5H5对AA-A、AA-B、AA-C、AA-D的半数抑制浓度分别为0.03、0.06、0.05、0.03 ng/mL。为了解释mAb 5H5的广谱特异性,我们进行了分子对接。结果表明,AAs的多种构象可以在单链可变片段抗体(scFv)5H5的宽敞腔内灵活取向,并且scFv 5H5的ASN62和GLY64与AAs的硝基形成了特定的氢键,这解释了mAb 5H