Javascript must be enabled to continue!
Akkermansia muciniphila Encapsulated in Calcium-Alginate Hydrogelated Matrix: Viability and Stability over Aerobic Storage and Simulated Gastrointestinal Conditions
View through CrossRef
Akkermansia muciniphila is considered a next-generation probiotic to be incorporated in new food and pharmaceutical formulations. Effective delivery systems are required to ensure high probiotic viability and stability during product manufacture, shelf-life, and post-consumption, namely, throughout digestion. Hydrogelated matrices have demonstrated promising potential in this dominion. Hence, this work aimed to evaluate the effect of a calcium-alginate hydrogelated matrix on A. muciniphila viability during 28-days refrigerated aerobic storage and when exposed to simulated gastrointestinal conditions, in comparison with that of free cells. Akkermansia muciniphila was successfully encapsulated in the calcium-alginate matrix via extrusion (60% encapsulation yield). Furthermore, encapsulated A. muciniphila exhibited high stability (a loss in viability lower than 0.2 log-cycle) after 28-days of refrigerated aerobic storage, maintaining its viability around 108 CFU/g. Prominently, as the storage time increased, encapsulated A. muciniphila revealed higher viability and stability regarding in vitro gastrointestinal conditions than free cells. This suggests that this encapsulation method may attenuate the detrimental effects of prolonged aerobic storage with a subsequent gastrointestinal passage. In conclusion, encapsulation via extrusion using a calcium-alginate hydrogelated matrix seems to be a promising and adequate strategy for safeguarding A. muciniphila from adverse conditions encountered during refrigerated aerobic storage and when exposed to the gastrointestinal passage.
Title: Akkermansia muciniphila Encapsulated in Calcium-Alginate Hydrogelated Matrix: Viability and Stability over Aerobic Storage and Simulated Gastrointestinal Conditions
Description:
Akkermansia muciniphila is considered a next-generation probiotic to be incorporated in new food and pharmaceutical formulations.
Effective delivery systems are required to ensure high probiotic viability and stability during product manufacture, shelf-life, and post-consumption, namely, throughout digestion.
Hydrogelated matrices have demonstrated promising potential in this dominion.
Hence, this work aimed to evaluate the effect of a calcium-alginate hydrogelated matrix on A.
muciniphila viability during 28-days refrigerated aerobic storage and when exposed to simulated gastrointestinal conditions, in comparison with that of free cells.
Akkermansia muciniphila was successfully encapsulated in the calcium-alginate matrix via extrusion (60% encapsulation yield).
Furthermore, encapsulated A.
muciniphila exhibited high stability (a loss in viability lower than 0.
2 log-cycle) after 28-days of refrigerated aerobic storage, maintaining its viability around 108 CFU/g.
Prominently, as the storage time increased, encapsulated A.
muciniphila revealed higher viability and stability regarding in vitro gastrointestinal conditions than free cells.
This suggests that this encapsulation method may attenuate the detrimental effects of prolonged aerobic storage with a subsequent gastrointestinal passage.
In conclusion, encapsulation via extrusion using a calcium-alginate hydrogelated matrix seems to be a promising and adequate strategy for safeguarding A.
muciniphila from adverse conditions encountered during refrigerated aerobic storage and when exposed to the gastrointestinal passage.
Related Results
Akkermansia muciniphila
secretome promotes α-synuclein aggregation in enteroendocrine cells
Akkermansia muciniphila
secretome promotes α-synuclein aggregation in enteroendocrine cells
ABSTRACT
The notion that the gut microbiota play a role in neurodevelopment, behavior and outcome of neurodegenerative disorders is recently taki...
P688 Association of Akkermansia muciniphila with a healthy gut microbiome
P688 Association of Akkermansia muciniphila with a healthy gut microbiome
Abstract
Background
Comprehensive knowledge of the types and ratios of microbes present in the healthy gastrointestinal human gu...
British Food Journal Volume 45 Issue 9 1943
British Food Journal Volume 45 Issue 9 1943
I now pass on to an aspect of calcium metabolism which is more topical, but probably more controversial. I refer to the incidence of calcium deficiency. By what means can we determ...
Survival and behavior of free and encapsulated probiotic bacteria under simulated human gastrointestinal and technological conditions
Survival and behavior of free and encapsulated probiotic bacteria under simulated human gastrointestinal and technological conditions
AbstractThe present study was designed with the objective to compare the viability and stability of free and encapsulated probiotics under simulated technological and human gastroi...
Potable Water Sources, Household Hygiene, and Sanitation Practices in Ikpoba Okha LGA, Edo State: Implications for Public Health and Sustainable Water Management
Omoregie, Andrew Edosa.1 Omoregie Abieyuwa Peace2 Okoro, Enyinnaya Okoro.3
1 College of Medi
Potable Water Sources, Household Hygiene, and Sanitation Practices in Ikpoba Okha LGA, Edo State: Implications for Public Health and Sustainable Water Management
Omoregie, Andrew Edosa.1 Omoregie Abieyuwa Peace2 Okoro, Enyinnaya Okoro.3
1 College of Medi
BACKGROUND
Access to potable drinking water and sufficient sanitation continues to be an urgent global concern, particularly in developing regions where con...
Growth inhibition of Akkermansia muciniphila by a secreted pathobiont sialidase
Growth inhibition of Akkermansia muciniphila by a secreted pathobiont sialidase
AbstractAkkermansia muciniphila is considered a key constituent of a healthy gut microbiota. In inflammatory bowel disease (IBD), A. muciniphila has a reduced abundance while other...
Zinc and Cobalt exposure influence
Akkermansia muciniphila
growth and short-chain fatty acid metabolism
Zinc and Cobalt exposure influence
Akkermansia muciniphila
growth and short-chain fatty acid metabolism
ABSTRACT
Akkermansia muciniphila
is a probiotic bacterium that has been proposed as a potential intervention for depression.
...
The role of Akkermansia muciniphila in obesity, diabetes and atherosclerosis
The role of Akkermansia muciniphila in obesity, diabetes and atherosclerosis
Alteration in the composition of the gut microbiota can lead to a number of chronic clinical diseases.
Akkermansia muciniphila
...

