Xiao_2021_Talanta_221_121362

Reference

Title : A thiamine-triggered fluormetric assay for acetylcholinesterase activity and inhibitor screening based on oxidase-like activity of MnO(2) nanosheets - Xiao_2021_Talanta_221_121362
Author(s) : Xiao T , Wang S , Yan M , Huang J , Yang X
Ref : Talanta , 221 :121362 , 2021
Abstract :

Acetylcholinesterase (AChE) plays an essential role in biological signal transmission, the aberrant expression of which could cause diverse neurodegenerative diseases. Herein, based on the oxidase-like activity of manganese dioxide nanosheets (MnO(2) NSs), we found that MnO(2) NSs could directly oxidize thiamine into intensely fluorescent thiochrome without the need of peroxides. When AChE was introduced, acetylthiocholine could be hydrolyzed to generate thiocholine, which efficiently triggered the reduction of MnO(2) NSs into Mn(2+), resulting in the decrease of fluorescence. Owing to the inhibiting effect of tacrine to the AChE activity, the decomposition of MnO(2) was hindered, thus leading to the fluorescence recovery. According to the above mechanism, we constructed a simple, low-cost, label-free, facile and rapid synthetic fluorescent biosensor for highly sensitive and selective detection of AChE activity and screening of its inhibitor. This biosensor obtained a good linear range from 0.02 to 1 mU/mL and an extremely low detection limit of 15 muU/mL for AChE assay, as well as a sensitive screening for tacrine and an excellent applicability in human serum samples. These results suggested that our proposed method would be potentially applied in monitoring the disease progression.

PubMedSearch : Xiao_2021_Talanta_221_121362
PubMedID: 33076048

Related information

Citations formats

Xiao T, Wang S, Yan M, Huang J, Yang X (2021)
A thiamine-triggered fluormetric assay for acetylcholinesterase activity and inhibitor screening based on oxidase-like activity of MnO(2) nanosheets
Talanta 221 :121362

Xiao T, Wang S, Yan M, Huang J, Yang X (2021)
Talanta 221 :121362