Guangdong Provincial Key Laboratory of Food Quality and Safety / Research Center for Green Development of Agriculture, South China Agricultural University, Guangzhou, 510642, China.
Guangdong Provincial Key Laboratory of Food Quality and Safety / Research Center for Green Development of Agriculture, South China Agricultural University, Guangzhou, 510642, China; Laboratory of Quality & Safety Risk Assessment for Agro-products (Zhaoqing), Ministry of Agriculture and Rural Affairs, School of Food and Pharmaceutical Engineering, Zhaoqing University, Zhaoqing, 526061, China.
Environ Pollut. 2023 Oct 15;335:122265. doi: 10.1016/j.envpol.2023.122265. Epub 2023 Jul 28.
The simultaneous determination of carbaryl and its metabolite 1-naphthol is essential for risk assessment of pesticide exposure in agricultural and environmental samples. Herein, several bispecific nanobodies (BsNbs) with different lengths of hydrophilic linkers and junction sites were prepared and characterized for the simultaneous recognition of carbaryl and its metabolite 1-naphthol. It was found that the affinity of BsNbs to the analytes could be regulated by controlling linker length and linking terminal. Additionally, molecular simulation revealed that linker lengths affected the conformation of BsNbs, leading to alteration in sensitivity. The BsNb with GS linker, named GS-C-N-VHH, showing good thermal stability and sensitivity was used to develop a bispecific indirect competitive enzyme-linked immunosorbent assay (Bic-ELISA). The assay demonstrated a limit of detection of 0.8 ng/mL for carbaryl and 0.4 ng/mL for 1-naphthol in buffer system. Good recoveries from soil and rice samples were obtained, ranging from 80.0% to 112.7% (carbaryl) and 76.5%-110.8% (1-naphthol), respectively. Taken together, this study firstly provided a BsNb with high sensitivity and efficiency against environmental pesticide and its metabolite, and firstly used molecular dynamics simulation to explore the influence of linker on recognition. The results are valuable for the application of immunoassay with high efficiency in the fields of environment and agriculture.
同时测定杀虫剂克百威及其代谢物 1-萘酚对于评估农业和环境样品中农药暴露的风险至关重要。本文制备了几种具有不同亲水连接子和连接位点长度的双特异性纳米抗体(BsNbs),用于同时识别克百威及其代谢物 1-萘酚。结果发现,通过控制连接子长度和连接末端,可以调节 BsNbs 与分析物的亲和力。此外,分子模拟表明,连接子长度影响 BsNbs 的构象,从而改变其灵敏度。具有 GS 连接子的 BsNb,命名为 GS-C-N-VHH,显示出良好的热稳定性和灵敏度,用于开发双特异性间接竞争酶联免疫吸附测定(Bic-ELISA)。该测定法在缓冲体系中对克百威的检测限为 0.8 ng/mL,对 1-萘酚的检测限为 0.4 ng/mL。从土壤和水稻样品中获得了良好的回收率,范围分别为 80.0%-112.7%(克百威)和 76.5%-110.8%(1-萘酚)。总之,本研究首次提供了一种针对环境农药及其代谢物具有高灵敏度和高效率的 BsNb,并首次利用分子动力学模拟探讨了连接子对识别的影响。研究结果对于高效免疫分析在环境和农业领域的应用具有重要价值。