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Emerging Insights into the Use of Advanced Nanomaterials for the Electrochemiluminescence Biosensor of Pesticide Residues in Plant-Derived Foodstuff

Authors
Al-Hawary, Sulieman IbraheemMalviya, JitendraAlthomali, Raed H.Almalki, Sami G.Kim, KibumRomero-Parra, Rosario MireyaAhmad, Ahmad FahadJabbar, Hijran SanaanAkram, Shaik VaseemRadie, Ahmed Hussien
Issue Date
Sep-2023
Publisher
Taylor & Francis
Keywords
Biosensing; electrochemiluminescence; nanomaterials; pesticide contaminants
Citation
Critical Reviews in Analytical Chemistry, pp 1 - 18
Pages
18
Indexed
SCIE
SCOPUS
Journal Title
Critical Reviews in Analytical Chemistry
Start Page
1
End Page
18
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/116018
DOI
10.1080/10408347.2023.2258971
ISSN
1040-8347
1547-6510
Abstract
Pesticides have an important role in rising the overall productivity and yield of agricultural foods by eliminating and controlling insects, pests, fungi, and various plant-related illnesses. However, the overuse of pesticides has caused pesticide pollution of water bodies and food products, along with disruption of environmental and ecological systems. In this regard, developing low-cost, simple, and rapid-detecting approaches for the accurate, rapid, efficient, and on-site screening of pesticide residues is an ongoing challenge. Electrochemiluminescence (ECL) possesses the benefits of great sensitivity, the capability to resolve several analytes using different emission wavelengths or redox potentials, and excellent control over the light radiation in time and space, making it a powerful strategy for sensing various pesticides. Cost-effective and simple ECL systems allow sensitive, selective, and accurate quantification of pesticides in agricultural fields. Particularly, the development and progress of nanomaterials, aptamer/antibody recognition, electric/photo-sensing, and their integration with electrochemiluminescence sensing technology has presented the hopeful potential in reporting the residual amounts of pesticides. Current trends in the application of nanoparticles are debated, with an emphasis on sensor substrates using aptamer, antibodies, enzymes, and molecularly imprinted polymers (MIPs). Different strategies are enclosed in labeled and label-free sensing along with luminescence determination approaches (signal-off, signal-on, and signal-switch modes). Finally, the recent challenges and upcoming prospects in this ground are also put forward.
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ERICA 소프트웨어융합대학 (SCHOOL OF MEDIA, CULTURE, AND DESIGN TECHNOLOGY)
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