Development of an automated multienzymatic biosensor for risk assessment of pesticide contamination in water and food
Abstract The goal of this research is to better address the problems related to the widespread presence of pesticides in the environment. Despite the unquestionable utility of the pesticides against various pests in the agricultural field, most pesticides and the corresponding pesticide residues are...
Main Authors: | , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Wiley
2018-08-01
|
Series: | EFSA Journal |
Subjects: | |
Online Access: | https://doi.org/10.2903/j.efsa.2018.e16084 |
_version_ | 1819121733629640704 |
---|---|
author | Institute of Protein Biochemistry – National Research Council, Naples, Italy Janis Rusko Ferdinando Febbraio |
author_facet | Institute of Protein Biochemistry – National Research Council, Naples, Italy Janis Rusko Ferdinando Febbraio |
author_sort | Institute of Protein Biochemistry – National Research Council, Naples, Italy |
collection | DOAJ |
description | Abstract The goal of this research is to better address the problems related to the widespread presence of pesticides in the environment. Despite the unquestionable utility of the pesticides against various pests in the agricultural field, most pesticides and the corresponding pesticide residues are toxic to the environment and hazardous to human health. The recent literature on organophosphate compounds emphasises a clear correlation between their use and the occurrence of disorders in the nervous system, especially in children. The conventional systems for the detection and analysis of these compounds are expensive, time‐consuming and require highly specialised operators; moreover, no online automated screening systems are yet available, that would allow the identification and quantification of the presence of these chemicals in samples from industrial sectors such as the food industry. Esterase‐based biosensors represent a viable alternative to this problem. In this fellowship programme, we aim to develop a robust and sensitive methodology that enables the screening of toxic compounds using a streamlined process, using an automated robotic system to achieve a continuous monitoring for risk assessment of pesticides. |
first_indexed | 2024-12-22T06:41:15Z |
format | Article |
id | doaj.art-05649c316d5e46c8b409cf308cc9109d |
institution | Directory Open Access Journal |
issn | 1831-4732 |
language | English |
last_indexed | 2024-12-22T06:41:15Z |
publishDate | 2018-08-01 |
publisher | Wiley |
record_format | Article |
series | EFSA Journal |
spelling | doaj.art-05649c316d5e46c8b409cf308cc9109d2022-12-21T18:35:26ZengWileyEFSA Journal1831-47322018-08-0116S1n/an/a10.2903/j.efsa.2018.e16084Development of an automated multienzymatic biosensor for risk assessment of pesticide contamination in water and foodInstitute of Protein Biochemistry – National Research Council, Naples, ItalyJanis RuskoFerdinando FebbraioAbstract The goal of this research is to better address the problems related to the widespread presence of pesticides in the environment. Despite the unquestionable utility of the pesticides against various pests in the agricultural field, most pesticides and the corresponding pesticide residues are toxic to the environment and hazardous to human health. The recent literature on organophosphate compounds emphasises a clear correlation between their use and the occurrence of disorders in the nervous system, especially in children. The conventional systems for the detection and analysis of these compounds are expensive, time‐consuming and require highly specialised operators; moreover, no online automated screening systems are yet available, that would allow the identification and quantification of the presence of these chemicals in samples from industrial sectors such as the food industry. Esterase‐based biosensors represent a viable alternative to this problem. In this fellowship programme, we aim to develop a robust and sensitive methodology that enables the screening of toxic compounds using a streamlined process, using an automated robotic system to achieve a continuous monitoring for risk assessment of pesticides.https://doi.org/10.2903/j.efsa.2018.e16084organophosphate pesticidesbiosensing devicethermophilic esteraseenvironmental monitoring |
spellingShingle | Institute of Protein Biochemistry – National Research Council, Naples, Italy Janis Rusko Ferdinando Febbraio Development of an automated multienzymatic biosensor for risk assessment of pesticide contamination in water and food EFSA Journal organophosphate pesticides biosensing device thermophilic esterase environmental monitoring |
title | Development of an automated multienzymatic biosensor for risk assessment of pesticide contamination in water and food |
title_full | Development of an automated multienzymatic biosensor for risk assessment of pesticide contamination in water and food |
title_fullStr | Development of an automated multienzymatic biosensor for risk assessment of pesticide contamination in water and food |
title_full_unstemmed | Development of an automated multienzymatic biosensor for risk assessment of pesticide contamination in water and food |
title_short | Development of an automated multienzymatic biosensor for risk assessment of pesticide contamination in water and food |
title_sort | development of an automated multienzymatic biosensor for risk assessment of pesticide contamination in water and food |
topic | organophosphate pesticides biosensing device thermophilic esterase environmental monitoring |
url | https://doi.org/10.2903/j.efsa.2018.e16084 |
work_keys_str_mv | AT instituteofproteinbiochemistrynationalresearchcouncilnaplesitaly developmentofanautomatedmultienzymaticbiosensorforriskassessmentofpesticidecontaminationinwaterandfood AT janisrusko developmentofanautomatedmultienzymaticbiosensorforriskassessmentofpesticidecontaminationinwaterandfood AT ferdinandofebbraio developmentofanautomatedmultienzymaticbiosensorforriskassessmentofpesticidecontaminationinwaterandfood |