Antimicrobial Tolerance in Salmonella: Contributions to Survival and Persistence in Processing Environments

Author:

Obe Tomi1ORCID,Kiess Aaron S.2,Nannapaneni Ramakrishna3

Affiliation:

1. Department of Poultry Science, University of Arkansas, Fayetteville, AR 72701, USA

2. Prestage Department of Poultry Science, College of Agriculture and Life Sciences, North Carolina State University, Raleigh, NC 27695, USA

3. Department of Food Science, Nutrition and Health Promotion, Mississippi State University, Mississippi, MS 39762, USA

Abstract

Salmonella remains a top bacterial pathogen implicated in several food-borne outbreaks, despite the use of antimicrobials and sanitizers during production and processing. While these chemicals have been effective, Salmonella has shown the ability to survive and persist in poultry processing environments. This can be credited to its microbial ability to adapt and develop/acquire tolerance and/or resistance to different antimicrobial agents including oxidizers, acids (organic and inorganic), phenols, and surfactants. Moreover, there are several factors in processing environments that can limit the efficacy of these antimicrobials, thus allowing survival and persistence. This mini-review examines the antimicrobial activity of common disinfectants/sanitizers used in poultry processing environments and the ability of Salmonella to respond with innate or acquired tolerance and survive exposure to persists in such environments. Instead of relying on a single antimicrobial agent, the right combination of different disinfectants needs to be developed to target multiple pathways within Salmonella.

Publisher

MDPI AG

Reference121 articles.

1. IFSAC (Interagency Food Safety Analytics Collaboration) (2023, May 15). Foodborne Illness Source Attribution Estimates for 2020 for Salmonella, Escherichia coli O157, Listeria monocytogenes, and Campylobacter Using Multi-Year Outbreak Surveillance Data, United States, Available online: https://www.fda.gov/food/cfsan-constituent-updates/release-annual-report-2020-sources-foodborne-illness-interagency-food-safety-analytics-collaboration.

2. CDC (Centers for Disease Control and Prevention) (2023, November 04). Salmonella, Available online: https://www.cdc.gov/salmonella/index.html.

3. EFSA and ECDC (European Food Safety Authority and European Centre for Disease Prevention and Control) (2022). The European Union One Health 2021 Zoonoses Report. EFSA J., 20, 7666.

4. Dubois-Brissonnet, F. (2023, November 29). Adaptation of Salmonella to Antimicrobials in Food-Processing Environments 6 Adaptation of Salmonella to Antimicrobials in Food-Processing Environments. InTech 2019, Ch 6, 123–146. Available online: https://hal.science/hal-01991467/document.

5. Controlling Salmonella: Strategies for Feed, the Farm, and the Processing Plant;Obe;Poult. Sci.,2023

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