Recent Advances on Peptide-Based Biosensors and Electronic Noses for Foodborne Pathogen Detection

Author:

Escobar Vanessa12ORCID,Scaramozzino Natale2ORCID,Vidic Jasmina3ORCID,Buhot Arnaud1ORCID,Mathey Raphaël1ORCID,Chaix Carole4ORCID,Hou Yanxia1ORCID

Affiliation:

1. Grenoble Alpes University, CEA, CNRS, IRIG-SyMMES, 17 Rue des Martyrs, 38000 Grenoble, France

2. Grenoble Alpes University, CNRS, LIPhy, 38000 Grenoble, France

3. INRAE, AgroParisTech, Micalis Institute, Université Paris-Saclay, 78350 Jouy-en-Josas, France

4. Institute of Analytical Sciences, University of Lyon, CNRS, Claude Bernard Lyon 1 University, UMR 5280, 69100 Villeurbanne, France

Abstract

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.

Funder

French National Research Agency

Publisher

MDPI AG

Subject

Clinical Biochemistry,General Medicine,Analytical Chemistry,Biotechnology,Instrumentation,Biomedical Engineering,Engineering (miscellaneous)

Reference168 articles.

1. Review on Major Food-Borne Zoonotic Bacterial Pathogens;Abebe;J. Trop. Med.,2020

2. World Health Organization (WHO) (2015). Estimates of the Global Burden of Foodborne Diseases: Foodborne Disease Burden Epidemiology Reference Group 2007–2015.

3. Antibiotic Resistance: Global Health Crisis and Metagenomics;Yadav;Biotechnol. Rep.,2021

4. A Review on Major Food Borne Bacterial Illnesses;J. Trop. Dis.,2015

5. European Food Safety Authority, and European Centre for Disease Prevention and Control (2021). The European Union One Health 2020 Zoonoses Report. EFSA J., 19, e06971.

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