Chrouda_2020_Toxins.(Basel)_12_

Reference

Title : An Acetylcholinesterase Inhibition-Based Biosensor for Aflatoxin B1 Detection Using Sodium Alginate as an Immobilization Matrix - Chrouda_2020_Toxins.(Basel)_12_
Author(s) : Chrouda A , Zinoubi K , Soltane R , Alzahrani N , Osman G , Al-Ghamdi YO , Qari S , Al Mahri A , Algethami FK , Majdoub H , Jaffrezic Renault N
Ref : Toxins (Basel) , 12 : , 2020
Abstract :

In this study, we investigated a novel aflatoxin biosensor based on acetylcholinesterase (AChE) inhibition by aflatoxin B1 (AFB1) and developed electrochemical biosensors based on a sodium alginate biopolymer as a new matrix for acetylcholinesterase immobilization. Electrochemical impedance spectroscopy was performed as a convenient transduction method to evaluate the AChE activity through the oxidation of the metabolic product, thiocholine. Satisfactory analytical performances in terms of high sensitivity, good repeatability, and long-term storage stability were obtained with a linear dynamic range from 0.1 to 100 ng/mL and a low detection limit of 0.1 ng/mL, which is below the recommended level of AFB1 (2 microg/L). The suitability of the proposed method was evaluated using the samples of rice supplemented with AFB1 (0.5 ng/mL). The selectivity of the AChE-biosensor for aflatoxins relative to other sets of toxic substances (OTA, AFM 1) was also investigated.

PubMedSearch : Chrouda_2020_Toxins.(Basel)_12_
PubMedID: 32168976

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Citations formats

Chrouda A, Zinoubi K, Soltane R, Alzahrani N, Osman G, Al-Ghamdi YO, Qari S, Al Mahri A, Algethami FK, Majdoub H, Jaffrezic Renault N (2020)
An Acetylcholinesterase Inhibition-Based Biosensor for Aflatoxin B1 Detection Using Sodium Alginate as an Immobilization Matrix
Toxins (Basel) 12 :

Chrouda A, Zinoubi K, Soltane R, Alzahrani N, Osman G, Al-Ghamdi YO, Qari S, Al Mahri A, Algethami FK, Majdoub H, Jaffrezic Renault N (2020)
Toxins (Basel) 12 :