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Trending biocontrol strategies against Cronobacter sakazakii: A recent updated review
Rajni Chauhan1, Niharika Singh2, Gaurav Kumar Pal3
1Department of Biotechnology, Himachal Pradesh University, Shimla, India.
Insights
Cronobacter sakazakii infections in infants are a serious risk from contaminated powdered infant formula (PIF). Biological control methods show promise but require synergistic approaches with physical treatments for complete pathogen elimination.
Area of Science:
- Food microbiology
- Food safety
- Emerging pathogens
Background:
- Cronobacter sakazakii is a dangerous foodborne pathogen linked to severe infant infections.
- Powdered infant formula (PIF) can become contaminated with Cronobacter spp. during manufacturing.
- Antimicrobial resistance necessitates novel strategies for controlling foodborne pathogens.
Purpose of the Study:
- To review biological antagonists and combinatorial therapies for eliminating Cronobacter sakazakii.
- To discuss the efficacy, potential, and trends of these biocontrol methods.
- To analyze the mechanisms of action and limitations of individual and combined strategies.
Main Methods:
- In vitro and in vivo assessments of biological antagonists.
- Review of combinatorial therapies involving biological and physico-chemical treatments.
- Comprehensive discussion of biocontrol agent mechanisms.
Main Results:
- Most biocontrol agents disrupt the cell membrane integrity of Cronobacter sakazakii.
- No single biological method completely eliminated the pathogen from reconstituted PIF.
- Synergistic effects were observed between biological agents and physico-chemical treatments.
Conclusions:
- Individual biocontrol strategies have limitations in dose and application.
- Combinatorial approaches show potential for pathogen-free infant foods.
- Further research is needed to evaluate synergistic activities and inactivation mechanisms.
Abstract:
Cronobacter sakazakii is an emerging foodborne pathogen, causing life-threatening infections in newborns and premature infants. Cronobacter spp. can survive under difficult processing conditions thereby contaminate the Powdered Infant Formula (PIF) during the manufacturing process. Infantile infections are associated with the consumption of contaminated PIF that was either contaminated intrinsically or extrinsically. This necessitates the development of sustainable strategies to manage the risk of Cronobacter infections. Natural methods of preservation holds promise as a viable alternative strategy to address the critical problem of emerging antimicrobial resistance and also to limit the negative effects of commonly used physico-chemical methods in food processing. The present study reviews the efficacies, potentials and developmental trends of biological antagonists and a combinatorial therapy to eliminate C. sakazakii using in vitro and in vivo methods. The mode of action of each biocontrol method has been discussed comprehensively. Most of these biocontrol agents interfere with the cell membrane integrity and its functions. However, none of the individual methods are able to eliminate the pathogen completely from the model food system i.e. reconstituted PIF. Each of the biological control strategies (agent) has its limitations in terms of their dose and method of application. A synergistic effect has been observed between the biological agent and physico-chemical treatments that may have the potential to ensure pathogen-free foods. Future research studies should evaluate the synergistic activities of these methods for their implication in infant foods as well as to understand the mechanisms of inactivation.
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