Dietary silver nanoparticles can disturb the gut microbiota in mice
Explore this paper's citation graph
Summary
The data indicate that oral exposure to human relevant doses of Ag NP can induce microbial alterations in the gut, and highlights that Ag NP aging in food, and more specifically sulfidation, can reduce the effects of AgNP on the microbiota by limiting the release of toxic Ag ions.
- Type
- dissertation
- Published
- 2015-12-01
- Cited by
- 162
- References
- 78
- Access
- Open access
- OpenAlex
- https://openalex.org/W27393559
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:13477088
Keywords
Business, Action (physics), Action research, Knowledge management, Process management
References
- Associating microbiome composition with environmental covariates using generalized UniFrac distances
- Molecular mechanism of silver nanoparticles in human intestinal cells
- Advancing our understanding of the human microbiome using QIIME
- The biological effects and possible modes of action of nanosilver.
- Gut Microbiota and Metabolic Disorders
- On the suitability of short reads of 16S rRNA for phylogeny-based analyses in environmental surveys.
- Effects of particle size and coating on toxicologic parameters, fecal elimination kinetics and tissue distribution of acutely ingested silver nanoparticles in a mouse model
- Repeated dose (28 day) administration of silver nanoparticles of varied size and coating does not significantly alter the indigenous murine gut microbiome
- Nano-silver – a review of available data and knowledge gaps in human and environmental risk assessment
- Silver nanoparticles as a potential antimicrobial additive for weaned pigs.
- Dietary exposure to silver nanoparticles in Sprague-Dawley rats: effects on oxidative stress and inflammation.
- Routine Habitat Change: A Source of Unrecognized Transient Alteration of Intestinal Microbiota in Laboratory Mice
- Artificial sweeteners induce glucose intolerance by altering the gut microbiota
- Richness of human gut microbiome correlates with metabolic markers
- Sulfidation processes of PVP-coated silver nanoparticles in aqueous solution: impact on dissolution rate.
- Residence time effects on phase transformation of nanosilver in reduced soils
- Repeated-dose toxicity and inflammatory responses in mice by oral administration of silver nanoparticles.
- The effect of omeprazole on the development of experimental autoimmune encephalomyelitis in C57BL/6J and SJL/J mice
- Toward understanding and manipulating the microbiome to treat intestinal disease
- Twenty-eight-day oral toxicity, genotoxicity, and gender-related tissue distribution of silver nanoparticles in Sprague-Dawley rats.
Cited by
- Influence of diet and dietary nanoparticles on gut dysbiosis.
- Heterogenic response of prokaryotes toward silver nanoparticles and ions is facilitated by phenotypes and attachment of silver aggregates to cell surfaces
- Deterrence in metabolic and biofilms forming activity of Candida species by mycogenic silver nanoparticles
- Effects of food‐borne nanomaterials on gastrointestinal tissues and microbiota
- Gut Dysbiosis and Neurobehavioral Alterations in Rats Exposed to Silver Nanoparticles
- Potential adverse effects of engineered nanomaterials commonly used in food on the miRNome.
- The effects of orally administered Ag, TiO 2 and SiO 2 nanoparticles on gut microbiota composition and colitis induction in mice
- Food contact materials and gut health: Implications for toxicity assessment and relevance of high molecular weight migrants.
- Gut Dysbiosis in Animals Due to Environmental Chemical Exposures
- Pro-Inflammatory versus Immunomodulatory Effects of Silver Nanoparticles in the Lung: The Critical Role of Dose, Size and Surface Modification
- Exposure of soil collembolans to microplastics perturbs their gut microbiota and alters their isotopic composition
- The unrecognized occupational relevance of the interaction between engineered nanomaterials and the gastro-intestinal tract: a consensus paper from a multidisciplinary working group
- Potential impact of inorganic nanoparticles on macronutrient digestion: titanium dioxide nanoparticles slightly reduce lipid digestion under simulated gastrointestinal conditions
- Impact of nanosilver on gut microbiota: a vulnerable link.
- Sex dependent effects of silver nanoparticles on the zebrafish gut microbiota
- The antihyperlipidemic effects of fullerenol nanoparticles via adjusting the gut microbiota in vivo
- Silver nanoparticles have lethal and sublethal adverse effects on development and longevity by inducing ROS-mediated stress responses
- Energy Dispersive X-ray (EDX) microanalysis: A powerful tool in biomedical research and diagnosis
- The Western Diet–Microbiome-Host Interaction and Its Role in Metabolic Disease
- Exposure to nanoplastics disturbs the gut microbiome in the soil oligochaete Enchytraeus crypticus.