Affiliation:
1. Department of Life Science, Atlantic Technological University, Ash Lane, F91 YW50 Sligo, Ireland
2. Centre for Precision Engineering, Materials and Manufacturing Research (PEM), Atlantic Technological University, F91 YW50 Sligo, Ireland
Abstract
Clostridioides species possess many virulence factors and alarming levels of muti-drug resistance which make them a significant risk to public health safety and a causative agent of livestock disease. Clostridioides result in serious systemic and gastrointestinal diseases such as myonecrosis, colitis, food poisoning and gastroenteritis. As foodborne pathogens, Clostridioides species are associated with significant incidences of morbidity and mortality where the application of broad-spectrum antibiotics predisposes patients to virulent Clostridioides colonisation. As part of the One Health approach, there is an urgent need to eliminate the use of antibiotics in food production to safeguard animals, humans and the environment. Alternative options are warranted to control foodborne pathogens at all stages of food production. Antimicrobial peptides and bacteriophages have demonstrated efficacy against Clostridioides species and may offer antimicrobial biocontrol options. The bacteriocin nisin, for example, has been implemented as a biopreservative for the control of Listeria, Staphylococcus and Clostridia species in food. Bacteriophage preparations have also gained recognition for the antibacterial action against highly virulent bacterial species including foodborne pathogens. Studies are warranted to mitigate the formulation and administration limitations associated with the application of such antimicrobials as biocontrol strategies. This review outlines foodborne Clostridioides species, their virulence factors, and potential biocontrol options for application in food production.
Subject
Virology,Microbiology (medical),Microbiology
Reference105 articles.
1. Guo, P., Zhang, K., Ma, X., and He, P. (2020). Clostridium species as probiotics: Potentials and challenges. J. Anim. Sci. Biotechnol., 11.
2. Clostridium;Figueiredo;Benef. Microbes Agro-Ecol.,2020
3. Clostridium bifermentans and C. subterminale are associated with kiwifruit vine decline, known as “moria”, in Italy;Spigaglia;Plant Pathol.,2020
4. Using an Endogenous CRISPR-Cas System for Genome Editing in the Human Pathogen Clostridium difficile;Maikova;Appl. Environ. Microbiol.,2019
5. 2019 update of the WSES guidelines for management of Clostridioides (Clostridium) difficile infection in surgical patients;Sartelli;World J. Emerg. Surg.,2020
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