生物传感器
化学
检出限
DNA
多菌灵
苯并咪唑
质谱法
色谱法
双金属片
分析物
多路复用
肉眼
生物化学
杀菌剂
催化作用
生物
有机化学
生物信息学
植物
作者
Ge Chen,Rongqi Zhai,Guangyang Liu,Xiaodong Huang,Kai-Ge Zhang,Xiaomin Xu,Lingyun Li,Yanguo Zhang,Jing Wang,Maojun Jin,Donghui Xu,A.M. Abd El‐Aty
标识
DOI:10.3389/fnut.2022.820150
摘要
Carbendazim (CBZ), a systemic, broad-spectrum benzimidazole fungicide, is widely used to control fungal diseases in agricultural products. Its residues might pose risks to human health and the environment. Therefore, it is warranted to establish a rapid and reliable method for its residual quantification. Herein, we proposed a competitive assay that combined aptamer (DNA) specific recognition and bimetallic nanozyme gold@platinum (Au@Pt) catalysis to trace the CBZ residue. The DNA was labeled onto bimetallic nanozyme Au@Pt surface to produce Au@Pt probes (Au@Pt-DNA). The magnetic Fe 3 O 4 was functionalized with a complementary strand of DNA (C-DNA) to form Fe 3 O 4 probes (Fe 3 O 4 -C-DNA). Subsequently, the CBZ and the Fe 3 O 4 probes competitively react with Au@Pt probes to form two Au@Pt-DNA biosensors (Au@Pt-ssDNA-CBZ and Au@Pt-dsDNA-Fe 3 O 4 ). The Au@Pt-ssDNA-CBZ biosensor was designed for qualitative analysis through a naked-eye visualization strategy in the presence of CBZ. Meanwhile, Au@Pt-dsDNA-Fe 3 O 4 biosensor was developed to quantitatively analyze CBZ using a multifunctional microplate reader. A competitive assay based on the dual-mode Au@Pt-DNA biosensors was established for onsite sensitive determination of CBZ. The limit of detection (LOD) and recoveries of the developed assay were 0.038 ng/mg and 71.88-110.11%, with relative standard deviations (RSDs) ranging between 3.15 and 10.91%. The assay demonstrated a good correlation with data acquired from liquid chromatography coupled with mass spectrometry/mass spectrometry analysis. In summary, the proposed competitive assay based on dual-mode Au@Pt-DNA biosensors might have a great potential for onsite sensitive detection of pesticides in agro-products.
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