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1.
Food Chem ; 441: 138381, 2024 May 30.
Article in English | MEDLINE | ID: mdl-38218150

ABSTRACT

The accumulation of the deoxynivalenol (DON) in the human body poses a significant health risk that is often overlooked, and we urgently need an ultra-sensitive rapid detection platform. Due to the porosity of NH2-MIL-101@MoS2, an increased loading of toluidine blue (TB) serves to create a signal reference. Cobalt@carbon (CoC) derived from metal organic frameworks was combined with NH2-MIL-101(NH2-MIL-101@CoC) to form an enzyme-free Nanoprobe (Apt-pro) with significant catalytic properties. The ratio (IBQ /ITB) was changed by varying the electrochemical signal of benzoquinone (BQ) (IBQ) and the amount of TB deposition (ITB). This aptasensor was successfully applied to detect DON in malt and peach seed, which exhibited a great linear range from 1 fg/mL to 10 ng/mL and low detection limit of 0.31 fg/mL for DON.


Subject(s)
Aptamers, Nucleotide , Biosensing Techniques , Metal Nanoparticles , Metal-Organic Frameworks , Trichothecenes , Humans , Metal-Organic Frameworks/chemistry , Peroxidase/chemistry , Molybdenum , Coloring Agents , Limit of Detection , Electrochemical Techniques , Aptamers, Nucleotide/chemistry , Metal Nanoparticles/chemistry
2.
Mikrochim Acta ; 190(8): 281, 2023 07 05.
Article in English | MEDLINE | ID: mdl-37407849

ABSTRACT

A facile and novel Ce-MOF@MWCNTs@ZnO-modified glassy carbon electrode was prepared through drop coating and used for accurate and sensitive electrochemical detection of carbendazim. The modification of ZnO nanospheres and Ce-based metal-organic frameworks (Ce-MOFs), which possess vast surface/bulk ratio, large surface area, and excellent catalytic ability, provided more active sites for reaction. The combination of multi-walled carbon nanotubes endowed the modified electrode with excellent conductivity and greatly accelerated the electron transfer. The promotion of electrochemical response and the significant improvement of peak current indicated the outstanding electrocatalytic ability of the modified electrode. The oxidation peak current of carbendazim which was measured by DPV in a potential range from 0.5 to 1.0 V produced a good linear relationship in the concentration ranges 0.05-10.0 µM and 10.0-50.0 µM under  optimized experimental conditions. The detection limit was 13.2 nM (S/N = 3). The constructed electrode was successfully applied to the detection of carbendazim in Lithospermum and Glycyrrhiza uralensis real samples and exhibited satisfactory RSD (2.7-3.6% and 1.6-4.8%, respectively) and recovery (102-106% and 97.7-107%, respectively).


Subject(s)
Drugs, Chinese Herbal , Nanocomposites , Nanotubes, Carbon , Zinc Oxide , Electrochemical Techniques , Nanocomposites/chemistry , Nanotubes, Carbon/chemistry , Drugs, Chinese Herbal/analysis
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