Yanxia Hou
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Recent Grants
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Development of an opto-electronic nose for analysis of volatile organic compounds
Open Date: 2017-11-01
Close Date: 2020-10-01
Grant: Close
Translational proof of concept of spintronic micro-‐nanoparticle non thermal vibrational therapy for glioblastomas
Open Date: 2017-01-01
Close Date: 2019-12-01
Grant: Close
Wellness and medical dIagnotics olfactory Sensors
Open Date: 2016-07-01
Close Date: 2019-06-01
Grant: Close
Magnetically actuated bio-inspired metamaterials
Open Date: 2015-11-01
Close Date: 2018-10-01
Grant: Close
Bioinspired design and preparation of sensing materials for electronic nose applications
Open Date: 2015-06-01
Close Date: 2016-05-01
Articles (11)
Recent Advances on Peptide-Based Biosensors and Electronic Noses for Foodborne Pathogen Detection
Foodborne pathogens present a serious issue around the world due to the remarkably high number of illnesses they cause every year. In an effort to narrow the gap between monitoring needs and currently implemented classical detection methodologies, the last decades have seen an increased development of highly accurate and reliable biosensors. Peptides as recognition biomolecules have been explored to develop biosensors that combine simple sample preparation and enhanced detection of bacterial pathogens in food. This review first focuses on the selection strategies for the design and screening of sensitive peptide bioreceptors, such as the isolation of natural antimicrobial peptides (AMPs) from living organisms, the screening of peptides by phage display and the use of in silico tools. Subsequently, an overview on the state-of-the-art techniques in the development of peptide-based biosensors for foodborne pathogen detection based on various transduction systems was given. Additionally, limitations in classical detection strategies have led to the development of innovative approaches for food monitoring, such as electronic noses, as promising alternatives. The use of peptide receptors in electronic noses is a growing field and the recent advances of such systems for foodborne pathogen detection are presented. All these biosensors and electronic noses are promising alternatives for the pathogen detection with high sensitivity, low cost and rapid response, and some of them are potential portable devices for on-site analyses.
Year:
2023
Collaborators (6)
Kuntheak KHENG
Professor
Université Grenoble Alpes
Wai Li Ling
Université Grenoble Alpes
Jérémie Topin
Assistant professor
Université Côte d'Azur
Bernard Dieny
Université Grenoble Alpes
Carole Chaix
University of Lyon
Jasmina Vidic
Université Paris-Saclay

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