Nanozyme based colorimetric detection of biogenic gaseous H 2 S using Ag@Au core/shell nanoplates with peroxidase-like activity

Mikrochimica acta(2023)

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摘要
A highly sensitive and facile colorimetric assay is introduced for detecting biogenic gaseous H 2 S using peroxidase (POD)-like catalytic activity of silver core/gold shell nanoplates (Ag@Au NPls). H 2 S can react with Ag@Au NPls to form Ag 2 S or Au 2 S on their surface, which can reduce POD-like activity of Ag@Au NPls and consequently decrease the absorbance at 650 nm due to oxidation of 3,3',5,5’-tetramethylbenzidine (TMB) in the presence of hydrogen peroxide (H 2 O 2 ). For in situ and multiple detection of H 2 S, we utilized a microplate cover with 24 polydimethylsiloxane inner wells where Ag@Au NPls reacted with H 2 S gas followed by treatment with TMB/H 2 O 2 . As a result, the change in absorbance at 650 nm showed a linear relationship with the H 2 S concentration in the range 0.33 to 2.96 μM (0.36 absorbance/μM H 2 S in PBS, R 2 = 0.994) with a limit of detection of 263 nM and a relative standard deviation of 4.4%. Finally, this assay could detect H 2 S released from Eikenella corrodens , used as a model bacterium, in a short time (20 min) or at a low number of bacteria (1 × 10 4 colony forming units/mL). Therefore, this assay is expected to be applied for the study of H 2 S signaling in bacterial physiology, as well as measure H 2 S production released from other oral bacteria that cause halitosis and oral diseases, leading to the subsequent diagnosis. Graphical abstract
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关键词
Nanozyme,Hydrogen sulfide,Silver core/gold shell nanoplates,Peroxidase-like activity,H2S releasing bacteria,Colorimetric detection
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