4.7 Article

Effects of Selenium Nanoparticles on Preventing Patulin-Induced Liver, Kidney and Gastrointestinal Damage

期刊

FOODS
卷 11, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/foods11050749

关键词

patulin; selenium nanoparticles; antioxidative; nephrotoxicity; hepatotoxicity; gastrointestinal damage

资金

  1. National Key R&D projects of the 13th five-year plan of China [2019YFC1606703]
  2. Doctoral Research Foundation of Zhejiang University of Technology [2020133013829]

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Selenium nanoparticles can effectively alleviate oxidative damage caused by patulin, but their effectiveness in preventing gastrointestinal damage is limited.
Patulin (PAT) is a toxic fungal metabolite, and oxidative damage was proved to be its important toxicity mechanism. Selenium nanoparticles (SeNPs) were prepared by reducing sodium selenite with chitosan as a stabilizer and used for preventing PAT-induced liver, kidney and gastrointestinal damage. SeNPs have good dispersibility, in vitro antioxidant activity, and are much less cytotoxic than sodium selenite. Cell culture studies indicated that SeNPs can effectively alleviate PAT-induced excessive production of intracellular ROS, the decline of glutathione peroxidase activity, and the suppression of cell viability. Evaluation of serum biochemical parameters, histopathology, oxidative stress biomarkers and activities of antioxidant enzymes in a mouse model showed that pre-treatment with SeNPs (2 mg Se/kg body weight) could ameliorate PAT-induced oxidative damage to the liver and kidneys of mice, but PAT-induced gastrointestinal oxidative damage and barrier dysfunction were not recovered by SeNPs, possibly because the toxin doses suffered by the gastrointestinal as the first exposed tissues exceeded the regulatory capacity of SeNPs. These results suggested that a combination of other strategies may be required to completely block PAT toxicity.

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