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Impacts of dietary silver nanoparticles and probiotic administration on the microbiota of an in-vitro gut model

Academic Article
Publication Date:
2019
Citation:
Impacts of dietary silver nanoparticles and probiotic administration on the microbiota of an in-vitro gut model / C. Cattò, E. Garuglieri, L. Borruso, D. Erba, M.C. Casiraghi, F. Cappitelli, F. Villa, S. Zecchin, R. Zanchi. - In: ENVIRONMENTAL POLLUTION. - ISSN 0269-7491. - 245(2019 Feb), pp. 754-763.
abstract:
Ingestion of silver nanoparticles (AgNPs) is inevitable linked to their widespread use in food, medicines and other consumer products. However, their effects on human microbiota at non-lethal concentrations remain poorly understood. In this study, the interactions among 1 μg mL-1 AgNPs, the intestinal microbiota, and the probiotic Bacillus subtilis (BS) were tested using in-vitro batch fermentation models inoculated with human fecal matter. Results from metagenomic investigations revealed that the core bacterial community was not affected by the exposure of AgNPs and BS at the later stage of fermentation, while the proportions of rare species changed drastically with the treatments. Furthermore, shifts in the Firmicutes/Bacteriodetes (F/B) ratios were observed after 24 h with an increase in the relative abundance of Firmicutes species and a decrease in Bacteroidetes in all fermentation cultures. The co-exposure to AgNPs and BS led to the lowest F/B ratio. Fluorescent in-situ hybridization analyses indicated that non-lethal concentration of AgNPs negatively affected the relative percentage of Faecalibacterium prausnitzii and Clostridium coccoides/Eubacterium rectales taxa in the fermentation cultures after 24 h. However, exposure to single and combined treatments of AgNPs and BS did not change the overall diversity of the fecal microflora. Functional differences in cell motility, translation, transport, and xenobiotics degradation occurred in AgNPs-treated fermentation cultures but not in AgNPs+BS-treated samples. Compared to the control samples, treated fecal cultures showed no significant statistical differences in terms of short-chain fatty acids profiles, cytotoxic and genotoxic effects on Caco-2 cell monolayers. Overall, AgNPs did not affect the composition and diversity of the core fecal microflora and its metabolic and toxic profiles. This work indicated a chemopreventive role of probiotic on fecal microflora against AgNPs, which were shown by the decrease of F/B ratio and the unaltered state of some key metabolic pathways.
IRIS type:
01 - Articolo su periodico
Keywords:
Fecal microbiota; Gut model; Phylogenetic and functional profile; Silver nanoparticles; Toxicity
List of contributors:
C. Cattò, E. Garuglieri, L. Borruso, D. Erba, M.C. Casiraghi, F. Cappitelli, F. Villa, S. Zecchin, R. Zanchi
Authors of the University:
CAPPITELLI FRANCESCA ( author )
CASIRAGHI MARIA CRISTINA ( author )
CATTO' CRISTINA ( author )
VILLA FEDERICA ( author )
ZECCHIN SARAH ( author )
Link to information sheet:
https://air.unimi.it/handle/2434/605500
Project:
Unraveling the effects of food-related engineered NANOparticles on the GUT interactive ecosystem
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Settore AGR/16 - Microbiologia Agraria
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