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Methylmercury Chronic Exposure and a High-Fat Diet Induce Gut Microbiome Alterations and Intestinal Barrier
Gabriella A Matos1, Daniela Nunes-Costa2, Daniel V Pinto1
1Laboratory of Tissue Healing, Ontogeny and Nutrition, Department of Morphology, Institute of Biomedicine, Federal University of Ceara, Fortaleza, Brazil.
Abstract:
Methylmercury (MeHg) is markedly toxic to humans. Our study explores whether MeHg and high-fat diet (HFD) can impair the intestinal barrier with microbiota dysbiosis in mice. Weanling mice were fed to HFD or standard diet for 40 days. In the last 20 days of diets, mice received either MeHg (20 mg/L) or drinking water. Proximal small intestine, cecum, and hair samples were collected. Villus length, crypt depth, villus/crypt length, mucin2 and lysozyme-positive cell counts, ZO-1 and occludin gene expression, and intestinal functional permeability were analyzed to assess the intestinal barrier. Blood samples were drawn to assess lipid parameters. Gut microbiome profiling was conducted with DNA from fecal/cecal samples. In addition, we analyzed ZO-1 immunofluorescence in the colon and small intestine. HFD increased MDA, Mucin2, and reduced villus height, crypt depth, villus/crypt length, lysozyme(+)-cell count, and increased intestinal permeability, regardless of MeHg intoxication. MeHg-HFD combination affected the intestinal barrier, decreasing ZO-1, occludin, and Nrf2 transcription, and increased permeability. HFD increased total plasma cholesterol and triglycerides. Only MeHg-HFD reduced microbiome alpha-diversity along with colonic ZO-1 immunolabeling loss compared to non-intoxicated mice fed a control diet. Regardless of diet, the genera Streptococcus, Psychrobacter, Facklamia, and Corynebacterium were severely depleted following MeHg intoxication. Other groups, such as Atopostipes and Jeotgalicoccus, were not altered by MeHg or HFD alone, but were significantly reduced by the combined HFD-MeHg. Synergistic effects of MeHg-HFD on the mucosa-associated microbiota are more pronounced than their individual effects. Our findings suggest that MeHg intoxication does not cause extensive dysbiosis but led to intestinal barrier disruption.
Insights
Methylmercury (MeHg) and high-fat diet (HFD) disrupt the intestinal barrier in mice. Combined MeHg-HFD significantly reduced gut microbial diversity and damaged the colonic barrier, indicating synergistic toxicity.
Area of Science:
- Toxicology
- Gastroenterology
- Microbiology
Background:
- Methylmercury (MeHg) is a potent neurotoxin with potential systemic effects.
- High-fat diets (HFD) are known to influence gut microbiota and intestinal health.
- The combined impact of MeHg and HFD on the intestinal barrier and gut microbiome is not well understood.
Purpose of the Study:
- To investigate the individual and combined effects of MeHg and HFD on intestinal barrier integrity and gut microbiota dysbiosis in mice.
- To assess alterations in intestinal morphology, gene expression, permeability, and lipid parameters.
Main Methods:
- Weanling mice were fed HFD or standard diet for 40 days, with MeHg exposure during the last 20 days.
- Intestinal barrier function was assessed via villus length, crypt depth, Mucin2, lysozyme counts, ZO-1/occludin expression, and permeability assays.
- Gut microbiome profiling was performed using fecal/cecal samples, alongside blood lipid analysis and ZO-1 immunofluorescence.
Main Results:
- HFD alone impaired intestinal barrier function and increased intestinal permeability, independent of MeHg.
- The combination of MeHg and HFD synergistically decreased intestinal barrier integrity, reduced ZO-1/occludin/Nrf2 expression, and increased permeability.
- MeHg-HFD significantly reduced gut microbiome alpha-diversity and colonic ZO-1 expression, with specific bacterial genera depleted by MeHg intoxication.
Conclusions:
- MeHg intoxication, especially in combination with HFD, leads to significant intestinal barrier disruption.
- While MeHg alone does not cause extensive dysbiosis, its combination with HFD exacerbates microbiota alterations and mucosal damage.
- These findings highlight the synergistic toxicity of MeHg and HFD on gut health.

