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Updated: Jul 5, 2025

An In Vitro Batch-culture Model to Estimate the Effects of Interventional Regimens on Human Fecal Microbiota
Published on: July 31, 2019
Probiotic-Induced Modulation of Microbiota Composition and Antibiotic Resistance Genes Load, an In Vitro Assessment
Alicja Maria Nogacka1,2, Silvia Saturio1,2, Guadalupe Monserrat Alvarado-Jasso1
1Department of Microbiology and Biochemistry of Dairy Products, Instituto de Productos Lácteos de Asturias, Consejo Superior de Investigaciones Científicas (IPLA-CSIC), 33300 Villaviciosa, Spain.
Abstract:
The imbalance of the gut microbiota (GM) is known as dysbiosis and is associated with disorders such as obesity. The increasing prevalence of microorganisms harboring antibiotic resistance genes (ARG) in the GM has been reported as a potential risk for spreading multi-drug-resistant pathogens. The objective of this work was the evaluation, in a fecal culture model, of different probiotics for their ability to modulate GM composition and ARG levels on two population groups, extremely obese (OB) and normal-weight (NW) subjects. Clear differences in the basal microbiota composition were observed between NW and OB donors. The microbial profile assessed by metataxonomics revealed the broader impact of probiotics on the OB microbiota composition. Also, supplementation with probiotics promoted significant reductions in the absolute levels of tetM and tetO genes. Regarding the blaTEM gene, a minor but significant decrease in both donor groups was detected after probiotic addition. A negative association between the abundance of Bifidobacteriaceae and the tetM gene was observed. Our results show the ability of some of the tested strains to modulate GM. Moreover, the results suggest the potential application of probiotics for reducing the levels of ARG, which constitutes an interesting target for the future development of probiotics.
Insights
Probiotics can alter gut microbiota (GM) composition and reduce antibiotic resistance genes (ARG) in both normal-weight and obese individuals. This suggests probiotics may help combat the spread of drug-resistant bacteria.
Area of Science:
- Microbiology
- Gut Microbiome Research
- Antibiotic Resistance
Background:
- Gut microbiota (GM) dysbiosis is linked to obesity and the spread of antibiotic resistance genes (ARG).
- The prevalence of ARG in the GM poses a risk for multi-drug-resistant pathogen dissemination.
Purpose of the Study:
- To evaluate probiotics' ability to modulate GM composition and ARG levels.
- To compare effects in extremely obese (OB) and normal-weight (NW) individuals using a fecal culture model.
Main Methods:
- Fecal culture model with different probiotic strains.
- Metataxonomic analysis of GM composition.
- Quantification of specific ARG (tetM, tetO, blaTEM).
Main Results:
- Significant differences in basal microbiota composition between NW and OB donors were observed.
- Probiotics had a broader impact on the OB microbiota.
- Probiotic supplementation significantly reduced tetM and tetO gene levels and slightly decreased blaTEM.
- A negative association was found between Bifidobacteriaceae abundance and the tetM gene.
Conclusions:
- Certain probiotic strains can modulate gut microbiota composition.
- Probiotics show potential for reducing ARG levels in the gut.
- This suggests a future application of probiotics in combating antibiotic resistance.

