化学
胆碱氧化酶
检出限
纳米团簇
荧光
氧化剂
级联反应
催化作用
组合化学
核化学
光化学
乙酰胆碱酯酶
色谱法
酶
有机化学
物理
量子力学
作者
Dongyan Chen,Li Wang,Jie Wei,Tianhui Jiao,Qingmin Chen,Munetaka Oyama,Quansheng Chen,Xi Chen,Xiaomei Chen
出处
期刊:Food Chemistry
[Elsevier BV]
日期:2024-01-11
卷期号:442: 138389-138389
被引量:12
标识
DOI:10.1016/j.foodchem.2024.138389
摘要
In this study, a cascade nanobioreactor was developed for the highly sensitive detection of methyl parathion (MP) in food samples. The simultaneous encapsulation of acetylcholinesterase (AChE) and choline oxidase (CHO) in a zeolitic imidazole ester backbone (ZIF-8) effectively improved the stability and cascade catalytic efficiency of the enzymes. In addition, glutathione-stabilized gold nanoclusters (GSH-AuNCs) were encapsulated in ZIF-8 by ligand self-assembly, conferring excellent fluorescence properties. Acetylcholine (ATCh) is catalyzed by a cascade of AChE/CHO@ZIF-8 as well as Fe(II) to generate hydroxyl radicals (·OH) with strong oxidizing properties. The ·OH radicals then oxidize Au(0) in GSH-AuNCs@ZIF-8 to Au(I), resulting in fluorescence quenching. MP, as an inhibitor of AChE, hinders the cascade reaction and thus restores the fluorescence emission, enabling its quantitative detection. The limit of detection of the constructed nanobioreactor for MP was 0.23 µg/L. This MOF-based cascade nanobioreactor has great potential for the detection of trace hazards.
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