Allergies are defined as a hypersensitivity reaction, immunologically mediated, as a result to an external stimulus. Peanuts induced allergies are considered one of the most severe, life-threatening food sensitivities since they trigger the highest frequency of severe and fatal reactions, even in trace amounts. Therefore, it is imperative to develop fast, accurate and easy-to-use analytical methods to determine Ara h1, is a seed storage protein from Arachis hypogea and the main peanut derived allergen. In this work, two strategies were applied to develop an electrochemical aptasensor based on GO-COOH and metallic nanoparticles immobilised on screen-printed carbon electrodes (SPCEs). The analytical performances of the aptasensor showed a linear range of 5-150 nM, and a limit of detection of 1.66 nM. The method was applied in peanut-free food samples with very good recoveries proving to be a promising tool for peanut allergy prevention.

Ara H1 peanut allergen detection using a labelled electrochemical aptasensor based on GO-COOH@bimetallic composite platform / Melinte, Gheorghe; Hosu, Oana; Cristea, Cecilia; Marrazza, Giovanna. - In: FOOD CHEMISTRY. - ISSN 1873-7072. - ELETTRONICO. - 400:(2023), pp. 0-0. [10.1016/j.foodchem.2022.134074]

Ara H1 peanut allergen detection using a labelled electrochemical aptasensor based on GO-COOH@bimetallic composite platform

Melinte, Gheorghe;Hosu, Oana;Marrazza, Giovanna
2023

Abstract

Allergies are defined as a hypersensitivity reaction, immunologically mediated, as a result to an external stimulus. Peanuts induced allergies are considered one of the most severe, life-threatening food sensitivities since they trigger the highest frequency of severe and fatal reactions, even in trace amounts. Therefore, it is imperative to develop fast, accurate and easy-to-use analytical methods to determine Ara h1, is a seed storage protein from Arachis hypogea and the main peanut derived allergen. In this work, two strategies were applied to develop an electrochemical aptasensor based on GO-COOH and metallic nanoparticles immobilised on screen-printed carbon electrodes (SPCEs). The analytical performances of the aptasensor showed a linear range of 5-150 nM, and a limit of detection of 1.66 nM. The method was applied in peanut-free food samples with very good recoveries proving to be a promising tool for peanut allergy prevention.
2023
400
0
0
Melinte, Gheorghe; Hosu, Oana; Cristea, Cecilia; Marrazza, Giovanna
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1290926
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