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Published on: November 17, 2018
Simulated Microplastic Release from Cutting Boards and Evaluation of Intestinal Inflammation and Gut Microbiota in
Hai-Jun Gan1, Shan Chen1, Ke Yao1
1State Key Laboratory of Pollution Control and Resource Reuse, Jiangsu Key Laboratory of Vehicle Emissions Control, School of Environment, Nanjing University, Nanjing, China.
Background:
Plastic cutting boards are commonly used in food preparation, increasing human exposure to microplastics (MPs). However, the health implications are still not well understood.
Objectives:
The objective of this study was to assess the impacts of long-term exposure to MPs released from cutting boards on intestinal inflammation and gut microbiota.
Methods:
MPs were incorporated into mouse diets by cutting the food on polypropylene (PP), polyethylene (PE), and willow wooden (WB) cutting boards, and the diets were fed to mice over periods of 4 and 12 wk. Serum levels of C-reactive protein (CRP), tumor necrosis factor- (TNF-), interleukin-10 (IL-10), lipopolysaccharide (LPS, an endotoxin), and carcinoembryonic antigen (CEA), along with ileum and colon levels of interleukin-1 (IL-), TNF-, malondialdehyde (MDA), superoxide dismutase (SOD), secretory immunoglobulin A (sIgA), and myosin light chain kinase (MLCK), were measured using mouse enzyme-linked immunosorbent assay (ELISA) kits. The mRNA expression of mucin 2 and intestinal tight junction proteins in mouse ileum and colon tissues was quantified using real-time quantitative reverse transcription polymerase chain reaction. Fecal microbiota, fecal metabolomics, and liver metabolomics were characterized.
Results:
PP and PE cutting boards released MPs, with concentrations reaching and in diets, respectively, and displaying mean particle sizes of vs. . Mice fed diets prepared on PP cutting boards for 12 wk exhibited significantly higher serum levels of LPS, CRP, TNF-, IL-10, and CEA, as well as higher levels of IL-1, TNF-, MDA, SOD, and MLCK in the ileum and colon compared with mice fed diets prepared on WB cutting boards. These mice also showed lower relative expression of Occludin and Zonula occludens-1 in the ileum and colon. In contrast, mice exposed to diets prepared on PE cutting boards for 12 wk did not show evident inflammation; however, there was a significant decrease in the relative abundance of Firmicutes and an increase in Desulfobacterota compared with those fed diets prepared on WB cutting boards, and exposure to diets prepared on PE cutting boards over 12 wk also altered mouse fecal and liver metabolites compared with those fed diets prepared on WB cutting boards.
Discussion:
The findings suggest that MPs from PP cutting boards impair intestinal barrier function and induce inflammation, whereas those from PE cutting boards affect the gut microbiota, gut metabolism, and liver metabolism in the mouse model. These findings offer crucial insights into the safe use of plastic cutting boards. https://doi.org/10.1289/EHP15472.
Insights
Plastic cutting boards release microplastics (MPs) into food, potentially harming gut health. Polypropylene (PP) MPs caused intestinal inflammation, while polyethylene (PE) MPs altered gut and liver metabolism in mice.
Area of Science:
- Environmental Health Sciences
- Toxicology
- Microbiome Research
Background:
- Plastic cutting boards are a common source of microplastic (MP) exposure during food preparation.
- The health effects of ingesting MPs from cutting boards remain largely unknown.
Purpose of the Study:
- To investigate the long-term effects of MPs from plastic cutting boards on intestinal inflammation and gut microbiota in a mouse model.
- To compare the impacts of polypropylene (PP) and polyethylene (PE) cutting boards versus a wooden cutting board (WB).
Main Methods:
- Mice were fed diets prepared using food cut on PP, PE, or WB cutting boards for 4 and 12 weeks.
- Biomarkers of inflammation, intestinal barrier function, gut microbiota composition, and metabolomics (fecal and liver) were analyzed.
- mRNA expression of tight junction proteins and mucin was quantified.
Main Results:
- PP cutting boards released significant MPs, leading to elevated inflammatory markers (LPS, CRP, TNF-α, IL-10, CEA) and impaired intestinal barrier function (reduced Occludin, ZO-1 expression) after 12 weeks.
- PE cutting boards also released MPs, but without evident inflammation; however, they significantly altered gut microbiota (decreased Firmicutes, increased Desulfobacterota) and affected fecal and liver metabolites.
- Wooden cutting boards served as a control, showing no significant adverse effects.
Conclusions:
- MPs from PP cutting boards induce intestinal inflammation and barrier dysfunction.
- MPs from PE cutting boards alter gut microbiota and host metabolism, impacting liver function.
- Findings highlight differential health risks associated with MPs from various plastic cutting boards, informing safe usage recommendations.

