Carboxymethyl chitosan–modified UiO-66 for the rapid detection of fenpropathrin in grains

Fenpropathrin residues in grain are potentially harmful to humans. Therefore, a fluorimetric lateral flow immunoassay using a zirconium-based organic skeleton (UiO-66) as a signal marker was developed for detecting fenpropathrin. Herein, carboxymethyl chitosan (CMCS) was used to modify UiO-66 and im...

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Veröffentlicht in:International journal of biological macromolecules 2024-04, Vol.265 (Pt 2), p.131032-131032, Article 131032
Hauptverfasser: Wang, Xiaoyao, Huang, Haizhi, Zhong, Siyao, Shentu, Xuping, Ye, Zihong, Yu, Xiaoping
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Sprache:eng
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Zusammenfassung:Fenpropathrin residues in grain are potentially harmful to humans. Therefore, a fluorimetric lateral flow immunoassay using a zirconium-based organic skeleton (UiO-66) as a signal marker was developed for detecting fenpropathrin. Herein, carboxymethyl chitosan (CMCS) was used to modify UiO-66 and improve its water solubility to facilitate stable binding with sodium fluorescein (NaFL). This resulted in formation of a new fluorescent probe that is more suitable for lateral flow immunoassay (LFIA). The materials were characterized via electron microscopy, Fourier-transform infrared spectroscopy, and powder X-ray diffraction. CMCS and NaFL were successfully bound to UiO-66. Under optimized conditions, the constructed NaFL/UiO-66@CMCS-LFIA exhibited a good linear relationship within the range of 0.98–62.5 μg/L, with a detection limit of 3.91 μg/L. This probe was fourfold more sensitive than traditional colloidal gold nanoparticle-based LFIA. Finally, NaFL/UiO-66@CMCS-LFIA was successfully applied to detect fenpropathrin in wheat and maize samples. The detection limit was 1.56 μg/kg and recoveries ranged from 96.58 % to 118.56 %. This study provides a sensitive, stable, and convenient method for the rapid detection of pesticide residues. •A chitosan-modified MOFs was synthesized as a probe for the LFIA detection of fenpropathrin.•NaFL/UIO-66@CMCS has excellent water solubility, affinity and fluorescence properties.•This assay has a 4-fold improved sensitivity than gold nanoparticles-LFIA.•The approach exhibited excellent application ability for real sample.
ISSN:0141-8130
1879-0003
DOI:10.1016/j.ijbiomac.2024.131032