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Novel Production Protocol for Small-scale Manufacture of Probiotic Fermented Foods
Published on: September 10, 2016
Safety assessment of probiotics for human use
Mary Ellen Sanders1, Louis M A Akkermans, Dirk Haller
1Dairy and Food Culture Technologies, Centennial, CO, USA. mes@mesanders.com
Abstract:
The safety of probiotics is tied to their intended use, which includes consideration of potential vulnerability of the consumer or patient, dose and duration of consumption, and both the manner and frequency of administration. Unique to probiotics is that they are alive when administered, and unlike other food or drug ingredients, possess the potential for infectivity or in situ toxin production. Since numerous types of microbes are used as probiotics, safety is also intricately tied to the nature of the specific microbe being used. The presence of transferable antibiotic resistance genes, which comprises a theoretical risk of transfer to a less innocuous member of the gut microbial community, must also be considered. Genetic stability of the probiotic over time, deleterious metabolic activities, and the potential for pathogenicity or toxicogenicity must be assessed depending on the characteristics of the genus and species of the microbe being used. Immunological effects must be considered, especially in certain vulnerable populations, including infants with undeveloped immune function. A few reports about negative probiotic effects have surfaced, the significance of which would be better understood with more complete understanding of the mechanisms of probiotic interaction with the host and colonizing microbes. Use of readily available and low cost genomic sequencing technologies to assure the absence of genes of concern is advisable for candidate probiotic strains. The field of probiotic safety is characterized by the scarcity of studies specifically designed to assess safety contrasted with the long history of safe use of many of these microbes in foods.
Insights
Probiotic safety depends on intended use, microbe type, and administration. Genomic sequencing is advised to ensure safety and identify potential risks in live probiotic supplements.
Area of Science:
- Microbiology
- Gastroenterology
- Food Science
Background:
- Probiotics are live microorganisms conferring a health benefit.
- Their safety is contingent upon specific usage parameters and microbial characteristics.
- Unique properties of probiotics, such as infectivity and toxin production potential, necessitate careful evaluation.
Purpose of the Study:
- To outline key considerations for assessing probiotic safety.
- To highlight the importance of microbe-specific safety evaluations.
- To emphasize the need for further research into probiotic-host interactions.
Main Methods:
- Review of existing knowledge on probiotic safety factors.
- Consideration of microbial characteristics, including genetic stability and potential for pathogenicity.
- Emphasis on genomic sequencing for identifying genes of concern.
Main Results:
- Probiotic safety is multifactorial, involving consumer vulnerability, dosage, administration, and the specific microbial species.
- Potential risks include infectivity, toxin production, transferable antibiotic resistance genes, and immunological effects in vulnerable populations.
- Genomic sequencing is a valuable tool for ensuring the safety of probiotic strains.
Conclusions:
- Comprehensive safety assessments are crucial for probiotics, considering their live nature and specific microbial properties.
- Further research is needed to elucidate mechanisms of probiotic-host interactions and understand reported adverse effects.
- Utilizing genomic technologies can enhance the safety assurance of candidate probiotic strains.
Related Concept Videos
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Introduction to the Human Microbiota
Microbes in the Production of Fermented Foods
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