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1.
Mikrochim Acta ; 189(12): 457, 2022 11 22.
Article in English | MEDLINE | ID: mdl-36417016

ABSTRACT

An elaborate composite of molecularly imprinted polymer (MIP)-modified gold nanoparticles (AuNPs)@silica dioxide (SiO2) was designed and prepared for real-time colorimetric determination of glutathione (GSH) in serum. Firstly, the MIPs were synthesized on the surface of SiO2 utilizing GSH as template molecules. Then, AuNPs were synthesized on the surface of MIPs@SiO2 to produce a composite of MIPs modified by AuNPs@SiO2. Compared with plain AuNPs, the composite possessed better peroxidase catalysis activity due to stabilization and protection from hydrophilic SiO2, which can catalyze H2O2 to·OH oxidizing 3,3,5,5-tetramethylbenzidine (TMB) to the colored product. In addition, its selectivity was enhanced by MIP modification with special recognition cavities. With the composite as the sensor, GSH was precisely and sensitively detected in the range 5 ~ 40 µM with a limit of determination of 1.16 µM according to the principle of inhibitive peroxidase catalysis activity by GSH. The proposed colorimetric detection was successfully utilized for selective, convenient, and rapid determination of GSH in serum. It provided a new strategy for drug real-time monitoring and has high potential in clinical drug analysis.


Subject(s)
Metal Nanoparticles , Molecular Imprinting , Gold , Molecularly Imprinted Polymers , Electrochemical Techniques , Silicon Dioxide , Hydrogen Peroxide , Polymers , Glutathione , Peroxidases
2.
Crit Rev Anal Chem ; : 1-19, 2022 Oct 02.
Article in English | MEDLINE | ID: mdl-36183252

ABSTRACT

Nanozymes, made of emerging nanomaterials, have similar activity to natural enzyme and exhibit promising applications in in the fields of environment, biology and medicine, and food safety science. In recent years, with the deep finding and research to nanozymes by researchers, its application in field of pharmaceutical analysis has emerged gradually, possessing great significance in drug safety evaluation and quality control. This review summarizes the construction of metal nanozymes, strategies to improve their performance and their application in pharmaceutical detection and analysis, especially in detection of target analytes consisting of small molecule medicine macromolecule, toxic and others, which proposes theoretical foundation for development of nanozymes in this field. At the same time, it also provides opportunities and challenges for the construction and application of new nanozymes.

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