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Oral Exposure to Polystyrene Microplastics of Mice on a Normal or High-Fat Diet and Intestinal and Metabolic Outcomes

Authors :
40838679
60281698
Okamura, Takuro
Hamaguchi, Masahide
Hasegawa, Yuka
Hashimoto, Yoshitaka
Majima, Saori
Senmaru, Takafumi
Ushigome, Emi
Nakanishi, Naoko
Asano, Mai
Yamazaki, Masahiro
Sasano, Ryoichi
Nakanishi, Yuki
Seno, Hiroshi
Takano, Hirohisa
Fukui, Michiaki
40838679
60281698
Okamura, Takuro
Hamaguchi, Masahide
Hasegawa, Yuka
Hashimoto, Yoshitaka
Majima, Saori
Senmaru, Takafumi
Ushigome, Emi
Nakanishi, Naoko
Asano, Mai
Yamazaki, Masahiro
Sasano, Ryoichi
Nakanishi, Yuki
Seno, Hiroshi
Takano, Hirohisa
Fukui, Michiaki
Publication Year :
2023

Abstract

[Background:] Microplastics (MPs) are small particles of plastic (≤ 5mm in diameter). In recent years, oral exposure to MPs in living organisms has been a cause of concern. Leaky gut syndrome (LGS), associated with a high-fat diet (HFD) in mice, can increase the entry of foreign substances into the body through the intestinal mucosa. [Objectives:] We aimed to evaluate the pathophysiology of intestinal outcomes associated with consuming a high-fat diet and simultaneous intake of MPs, focusing on endocrine and metabolic systems. [Methods:] C57BL6/J mice were fed a normal diet (ND) or HFD with or without polystyrene MP for 4 wk to investigate differences in glucose tolerance, intestinal permeability, gut microbiota, as well as metabolites in serum, feces, and liver. [Results:] In comparison with HFD mice, mice fed the HFD with MPs had higher blood glucose, serum lipid concentrations, and nonalcoholic fatty liver disease (NAFLD) activity scores. Permeability and goblet cell count of the small intestine (SI) in HFD-fed mice were higher and lower, respectively, than in ND-fed mice. There was no obvious difference in the number of inflammatory cells in the SI lamina propria between mice fed the ND and mice fed the ND with MP, but there were more inflammatory cells and fewer anti-inflammatory cells in mice fed the HFD with MPs in comparison with mice fed the HFD without MPs. The expression of genes related to inflammation, long-chain fatty acid transporter, and Na⁺/glucose cotransporter was significantly higher in mice fed the HFD with MPs than in mice fed the HFD without MPs. Furthermore, the genus Desulfovibrio was significantly more abundant in the intestines of mice fed the HFD with MPs in comparison with mice fed the HFD without MPs. Muc2 gene expression was decreased when palmitic acid and microplastics were added to the murine intestinal epithelial cell line MODE-K cells, and Muc2 gene expression was increased when IL-22 was added. [Discussion:] Our findings suggest

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1458644200
Document Type :
Electronic Resource