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Palladium Nanoparticles-Based Fluorescence Resonance Energy Transfer Aptasensor for Highly Sensitive Detection of Aflatoxin M1 in Milk

机译:基于钯纳米粒子的荧光共振能量转移自适应传感器对牛奶中黄曲霉毒素M1的高灵敏度检测

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摘要

A highly sensitive aptasensor for aflatoxin M1 (AFM1) detection was constructed based on fluorescence resonance energy transfer (FRET) between 5-carboxyfluorescein (FAM) and palladium nanoparticles (PdNPs). PdNPs (33 nm) were synthesized through a seed-mediated growth method and exhibited broad and strong absorption in the whole ultraviolet-visible (UV-Vis) range. The strong coordination interaction between nitrogen functional groups of the AFM1 aptamer and PdNPs brought FAM and PdNPs in close proximity, which resulted in the fluorescence quenching of FAM to a maximum extent of 95%. The non-specific fluorescence quenching caused by PdNPs towards fluorescein was negligible. After the introduction of AFM1 into the FAM-AFM1 aptamer-PdNPs FRET system, the AFM1 aptamer preferentially combined with AFM1 accompanied by conformational change, which greatly weakened the coordination interaction between the AFM1 aptamer and PdNPs. Thus, fluorescence recovery of FAM was observed and a linear relationship between the fluorescence recovery and the concentration of AFM1 was obtained in the range of 5–150 pg/mL in aqueous buffer with the detection limit of 1.5 pg/mL. AFM1 detection was also realized in milk samples with a linear detection range from 6 pg/mL to 150 pg/mL. The highly sensitive FRET aptasensor with simple configuration shows promising prospect in detecting a variety of food contaminants.
机译:基于5-羧基荧光素(FAM)和钯纳米粒子(PdNPs)之间的荧光共振能量转移(FRET),构建​​了一种用于检测黄曲霉毒素M1(AFM1)的高灵敏度适体传感器。 PdNPs(33 nm)是通过种子介导的生长方法合成的,并且在整个紫外线-可见光(UV-Vis)范围内均显示出宽而强的吸收性。 AFM1适体的氮官能团与PdNP之间的强配位相互作用使FAM和PdNP紧密相邻,从而导致FAM的荧光猝灭最大程度达到95%。由PdNP对荧光素引起的非特异性荧光猝灭可以忽略不计。将AFM1引入FAM-AFM1适配子-PdNPs FRET系统后,AFM1适配子优先与AFM1结合,伴随构象变化,大大削弱了AFM1适配子与PdNPs之间的配位相互作用。因此,观察到了FAM的荧光恢复,并且在水性缓冲液中荧光恢复与AFM1浓度之间的线性关系在5–150 pg / mL范围内,检出限为1.5 pg / mL。在牛奶样品中也实现了AFM1检测,线性检测范围为6 pg / mL至150 pg / mL。具有简单配置的高灵敏度FRET适体传感器在检测各种食品污染物方面显示出广阔的前景。

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