4.7 Article

Highly sensitive fluorescent quantification of acid phosphatase activity and its inhibitor pesticide Dufulin by a functional metal-organic framework nanosensor for environment assessment and food safety

期刊

FOOD CHEMISTRY
卷 370, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.foodchem.2021.131034

关键词

Nanosensor; Metal-organic framework; Acid phosphatase; Dufulin; Fluorescence detection; Pesticide

资金

  1. Natural Science Foundation of Jiangsu Province [BK20190507]
  2. National Natural Science Foundation of China [22104059]
  3. Program for Innovative Talents and Entrepreneurs of Jiangsu Province [201930650]

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A fluorescent sensing system based on MOF was designed for rapid and accurate detection of Dufulin, showing potential for assessing pesticide levels in real samples.
Developing a rapid and accurate strategy of sensing Dufulin is a vital challenge for risk assessment and food crops along with its spreading usage. Herein a dye-encapsulated azoterephthalate metal-organic framework (MOF)-based fluorescent sensing system was designed for Dufulin analysis by acid phosphatase (ACP) enzyme-controlled collapse of MOF framework and subsequent release of the encapsulated dye. The fluorescence in-tensity of the DMOF/AAP/ACP system was negatively related to the dosage of Dufulin (0-5 mu g mL(-1)) with detection limit of 2.96 ng mL(-1). The sensing system able to rapidly and sensitively sense the activity of ACP and Dufulin, and was also applicable for assessment of the real samples including paddy water and soil, polished rice and cucumber. Accordingly, this study illustrated the feasibility and the potential of MOF-derived nanosensors for improving pesticide analysis and opening up the design of the enzyme-based probes for pesticide sensing in environmental assessment and food safety.

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