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1.
Anal Chem ; 92(20): 14259-14266, 2020 10 20.
Artículo en Inglés | MEDLINE | ID: mdl-32998507

RESUMEN

Colorimetric analytical strategies exhibit great promise in developing on-site detection methods for antibiotics, while substantial recent research efforts remain problematic due to dissatisfactory sensitivity. Taking this into account, we develop a novel colorimetric sensor for in-field detection of antibiotics by using aptamer (Apt)-capped and horseradish peroxidise (HRP)-embedded zeolitic metal azolate framework-7 (MAF-7) (Apt/HRP@MAF-7) as target recognition and signal transduction, respectively. With the substrate 3,3',5,5'-tetramethylbenzidine (TMB)-impregnated chip attached on the lid, the assay can be conveniently operated in a tube and reliably quantified by a handheld colorimeter. Hydrophilic MAF-7 can not only prevent HRP aggregation but also enhance HRP activity, which would benefit its detection sensitivity. Besides, the catalytic activity of HRP@MAF-7 can be sealed through assembling with Apt and controllably released based on the bioresponsivity via forming target-Apt complexes. Consequently, a significant color signal can be observed owing to the oxidation of colorless TMB to its blue-green oxidized form oxTMB. As a proof-of-concept, portable detection of streptomycin was favorably achieved with excellent sensitivity, which is superior to most reported methods and commercial kits. The developed strategy affords a new design pattern for developing on-site antibiotics assays and immensely extends the application of enzyme embedded metal-organic framework composites.


Asunto(s)
Antibacterianos/análisis , Aptámeros de Nucleótidos/química , Enzimas Inmovilizadas/química , Peroxidasa de Rábano Silvestre/química , Estructuras Metalorgánicas/química , Estreptomicina/análisis , Bencidinas/química , Técnicas Biosensibles , Catálisis , Colorimetría , Colorantes/química , Límite de Detección , Oxidación-Reducción , Sensibilidad y Especificidad
3.
J Agric Food Chem ; 68(44): 12413-12420, 2020 Nov 04.
Artículo en Inglés | MEDLINE | ID: mdl-33104344

RESUMEN

Fungicides are commonly used to prevent and treat grape (Vitis vinifera L.) diseases; however, they are potentially toxic to humans. Herein, we show that the application of S-adenosyl-l-methionine (SAM) accelerated the metabolism of various fungicides in Cabernet Sauvignon berries. The substances and enzymes involved in the metabolism of fungicides were analyzed to elucidate the effects of SAM. Results showed that SAM improved the production rate of superoxide anion, the hydrogen peroxide content, and the activities of superoxide dismutase, catalase, and peroxidase in azoxystrobin-treated berries. Additionally, SAM had a positive effect on the content of reduced glutathione and on the activities of glutathione S-transferase, glutathione reductase, and glutathione peroxidase. Importantly, the stimulatory effect of SAM on fungicide metabolism was also observed for metalaxyl and thiophanate-methyl. These results suggest that SAM can be used to improve food safety.


Asunto(s)
Fungicidas Industriales/metabolismo , S-Adenosilmetionina/metabolismo , Vitis/metabolismo , Catalasa/metabolismo , Frutas/enzimología , Frutas/metabolismo , Glutatión/metabolismo , Glutatión Reductasa/metabolismo , Proteínas de Plantas/metabolismo , Superóxido Dismutasa/metabolismo , Vitis/enzimología
4.
Chem Commun (Camb) ; 53(73): 10160-10163, 2017 Sep 12.
Artículo en Inglés | MEDLINE | ID: mdl-28849818

RESUMEN

In this study, we found that Pb2+-induced aggregation can greatly accelerate the peroxidase-like activity of Au nanoclusters (Au-NCs). The catalytic activities of Au-NCs toward peroxidase substrate 3,3',5,5'-tetramethylbenzidine (TMB) oxidation in the presence of H2O2 are nearly 10-fold increased after the Pb2+-induced aggregation. Based on this finding, a simple and reliable colorimetric method for Pb2+ detection was developed.

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