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基于 CoO/MoS/Au 纳米复合材料和杂交链式反应的玉米赤霉烯酮电化学适体传感器

An electrochemical aptasensor for zearalenone detection based on the CoO/MoS/Au nanocomposites and hybrid chain reaction.

机构信息

Hunan Provincial Key Laboratory for Forestry Biotechnology & International Cooperation, Base of Science and Technology Innovation on Forest Resource Biotechnology, Central South University of Forestry and Technology, Changsha, 410004, China.

International Education Institute, Hunan University of Chinese Medicine, Changsha, 410208, China.

出版信息

Mikrochim Acta. 2024 Jun 4;191(7):367. doi: 10.1007/s00604-024-06439-5.

Abstract

An electrochemical aptasensor was used for the fast and sensitive detection of zearalenone (ZEN) based on the combination of CoO/MoS/Au nanocomposites and the hybrid chain reaction (HCR). The glassy carbon electrode was coated with CoO/MoS/Au nanomaterials to immobilize the ZEN-cDNA that had been bound with ZEN-Apt by the principle of base complementary pairing. In the absence of ZEN, the HCR could not be triggered because the ZEN-cDNA could not be exposed. After ZEN was added to the surface of the electrode, a complex structure was produced on the modified electrode by the combination of ZEN and ZEN-Apt. Therefore, the ZEN-cDNA can raise the HCR to produce the long-strand dsDNA structure. Due to the formation of dsDNA, the methylene blue (MB) could be inserted into the superstructure of branched DNA and the peak currents of the MB redox signal dramatically increased. So the concentration of ZEN could be detected by the change of signal intensity. Under optimized conditions, the developed electrochemical biosensing strategy showed an outstanding linear detection range of 1.0×10 mol/L to 1.0×10 mol/L, a low detection limit (LOD) of 8.5×10 mol/L with desirable selectivity and stability. Therefore, the fabricated platform possessed a great application potential in fields of food safety, medical detection, and drug analysis.

摘要

电化学适体传感器用于基于 CoO/MoS/Au 纳米复合材料和杂交链式反应 (HCR) 的快速灵敏检测玉米赤霉烯酮 (ZEN)。玻碳电极涂覆 CoO/MoS/Au 纳米材料,通过碱基互补配对原理固定与 ZEN-Apt 结合的 ZEN-cDNA。在没有 ZEN 的情况下,由于无法暴露 ZEN-cDNA,HCR 无法被触发。当 ZEN 被添加到电极表面时,通过 ZEN 和 ZEN-Apt 的结合,在修饰电极上产生了复杂的结构。因此,ZEN-cDNA 可以引发 HCR 产生长链 dsDNA 结构。由于形成 dsDNA,亚甲基蓝 (MB) 可以插入到分支 DNA 的超结构中,MB 氧化还原信号的峰电流显著增加。因此,可以通过信号强度的变化来检测 ZEN 的浓度。在优化条件下,开发的电化学生物传感策略显示出出色的线性检测范围为 1.0×10 mol/L 至 1.0×10 mol/L,检测限 (LOD) 低至 8.5×10 mol/L,具有良好的选择性和稳定性。因此,该平台在食品安全、医学检测和药物分析等领域具有巨大的应用潜力。

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