Carboxylated chitosan enabled platinum nanozyme with improved stability and ascorbate oxidase-like activity for a fluorometric acid phosphatase sensor

Chitosan modification has attracted considerable interest in the nanozyme field last decade. As a chitosan derivative, carboxylated chitosan (CC) has been less explored. Herein, PtNPs with an average size of approximately 3.3 nm and zeta potential of −44.8 ± 0.3 mV (n = 3) have been prepared by usin...

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Veröffentlicht in:Carbohydrate polymers 2022-12, Vol.298, p.120120-120120, Article 120120
Hauptverfasser: He, Shao-Bin, Yang, Liu, Yang, Yu, Noreldeen, Hamada A.A., Wu, Gang-Wei, Peng, Hua-Ping, Deng, Hao-Hua, Chen, Wei
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Sprache:eng
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Zusammenfassung:Chitosan modification has attracted considerable interest in the nanozyme field last decade. As a chitosan derivative, carboxylated chitosan (CC) has been less explored. Herein, PtNPs with an average size of approximately 3.3 nm and zeta potential of −44.8 ± 0.3 mV (n = 3) have been prepared by using CC as the surface modification (CC-PtNPs). We have carried out an in-depth investigation of CC-PtNPs, including the characterization, colloidal stability, and ascorbate oxidase-like activity. Due to the contribution of carboxylated chitosan, CC-PtNPs present improved colloidal stability and ascorbate oxidase-like activity compared to chitosan-modified Pt nanozyme. Inspired by these results, a fluorometric acid phosphatase sensor was proposed based on the improved performance of CC-PtNPs. This sensor exhibits excellent sensitivity and selectivity towards acid phosphatase in the linear range of 0.25–18 U/L with a low limit of detection (1.31 × 10−3 U/L). The concentration of acid phosphatase in human semen samples has been successfully measured. [Display omitted]
ISSN:0144-8617
1879-1344
DOI:10.1016/j.carbpol.2022.120120