4.7 Article

Novel colorimetric aptasensor based on MOF-derived materials and its applications for organophosphorus pesticides determination

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 440, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2022.129707

关键词

Organophosphorus pesticides; Colorimetric aptasensor; Metal-organic framework; Nanozymes; Magnetic nanoparticles

资金

  1. National Natural Science Foundation of China [31772068]
  2. Shandong Provincial Natural Science Foundation [ZR2020KC015]
  3. R&D Innovation Project for Major Agriculture Application Technology of Shandong Province [SD2019ZZ023]
  4. Shandong Provincial Science and Technology Achievement Transfer Subsidy (Lu-Yu Science and Technology Cooperation) - Technology Demonstration and Promotion of Portable Testing Equipment for Rapid Detection of Pesticide Residues in Spices [LYXZ10]
  5. Zibo-Sdut Integration Development Project [2019ZBXC090]

向作者/读者索取更多资源

A colorimetric aptasensor was developed based on aptamer-mediated bimetallic metal-organic frameworks nano-polymers for the visual detection of four organophosphorus pesticides. The sensor showed good selectivity and sensitivity under optimal conditions, making it suitable for detecting pesticide residues in various samples.
For the visual detection of four organophosphorus pesticides (OPs), a colorimetric aptasensor was developed based on aptamer-mediated bimetallic metal-organic frameworks (MOFs) nano-polymers. Fe-Co magnetic nanoparticles (MNPs) and Fe-N-C nanozymes were prepared based on pyrolytic reaction, and were labeled with broad spectrum aptamers and complementary chains of organophosphorus pesticides respectively. The hybridization of aptamers and complementary chains led to the formation of nano-polymers. In the presence of target pesticides, they competed with complementary chains for aptamers on Fe-Co MNPs, resulting in a large number of Fe-N-C nanozymes signal labels being released into the supernatant. Fe-N-C nanozymes showed similar activity to pemxidase and catalyzed the 3,3',5,5'-tetramethylbenzidine-hydrogen peroxide (TMB-H2O2) color system to turn the solution blue-green under mild conditions. The magnetic probes had good selectivity and sensitivity, and were easily separated by magnetic absorption. The sensor functioned well under optimal conditions, demonstrating good stability and specificity for four pesticides: phorate, profenofos, isocarbophos and omethoate, and the detection limits of four pesticides were as low as 0.16 ng/mL, 0.16 ng/mL, 0.03 ng/mL and 1.6 ng/mL respectively, and the recovery rate of OPs residue in vegetable samples was satisfactory. The work described here provided a simple, rapid and sensitive way to construct a biosensor.

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