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1. Long-term arsenic exposure decreases mice body weight and liver lipid droplets.

2. Down-regulation of O-GlcNAcylation alleviates insulin signaling pathway impairment following arsenic exposure via suppressing the AMPK/mTOR-autophagy pathway.

3. Effects of dietary arsenic exposure on liver metabolism in mice.

4. Effects of Intestinal Microbiota on the Biological Transformation of Arsenic in Zebrafish: Contribution and Mechanism.

5. The fecal arsenic excretion, tissue arsenic accumulation, and metabolomics analysis in sub-chronic arsenic-exposed mice after in situ arsenic-induced fecal microbiota transplantation.

6. The gut microbiome promotes arsenic metabolism and alleviates the metabolic disorder for their mammal host under arsenic exposure.

7. As3MT-mediated SAM consumption, which inhibits the methylation of histones and LINE1, is involved in arsenic-induced male reproductive damage.

8. In situ analysis of variations of arsenicals, microbiome and transcriptome profiles along murine intestinal tract.

9. Sub-chronic low-dose arsenic in rice exposure induces gut microbiome perturbations in mice.

10. The mycobiome in murine intestine is more perturbed by food arsenic exposure than in excreted feces.

11. Distribution of arsenic species and pathological characteristics of tissues of the mice fed with arsenic-supplemented food simulating rice.

12. Arsenic concentrations, diversity and co-occurrence patterns of bacterial and fungal communities in the feces of mice under sub-chronic arsenic exposure through food.

13. Neurotoxicity and brain metabolic dysfunction induced by long-term food-derived arsenic exposure.

15. Changes in metabolomics and lipidomics in brain tissue and their correlations with the gut microbiome after chronic food-derived arsenic exposure in mice.

16. Determination of arsenicals in mouse tissues after simulated exposure to arsenic from rice for sixteen weeks and the effects on histopathological features.

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