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Updated: Aug 25, 2025

Assessment of Gut Barrier Integrity in Mice Using Fluorescein-Isothiocyanate-Labeled Dextran
Published on: November 18, 2022
Intestinal flora variation reflects the short-term damage of microplastic to the intestinal tract in mice
Lingli Xie1, Taili Chen2, Jiayi Liu3
1Faculty of Life Science and Technology, National Engineering Laboratory for Applied Forest Ecological Technology in Southern China, Central South University of Forestry and Technology, Changsha 410004, China.
Abstract:
The potential toxicity of microplastic (MPs) to organisms has attracted extensive attention. However, due to the subacute toxicity of MPs, the biological effect is hard to verify in short-term exposure experiment. Here, by tracking the dynamics of gut microbes, mice model was utilized to evaluate the toxicity of compositional MPs (PE, PET, PP, PS and PVC). After 7 days digestive exposure, the physiological indicators were normal as the control group that the body weight and serum cholesterol levels were insignificant change. Whereas, through histopathological examination, all the treatment groups suffered colon tissue damage, among which PS had the most inflammatory cells. Moreover, the high-throughput sequencing results revealed great variation of intestinal flora in treated mice. The ratio of Bacteroidetes and Firmicutes in PE, PET and PP treatment groups heighten, and the relative abundance of Ruminococcaceae and Lachnospiraceae increased significantly at family levels. At the genus level, Alistipes bacteria in PS treatment group significantly decreased that is associated with obesity risk. It indicated that MPs induced inflammatory response would further interfere the dynamics of intestinal flora causing health effect in living organisms. This work shed light on MPs toxicity in short-term exposure and supplied research paradigm of MPs health risk assessment.
Insights
Microplastics (MPs) cause colon tissue damage and alter gut bacteria even after short-term exposure. This study reveals potential health risks associated with microplastic ingestion in mice.
Area of Science:
- Environmental Science
- Toxicology
- Microbiology
Background:
- Microplastic (MP) toxicity is a growing concern, but short-term effects are difficult to assess.
- Understanding MP biological impacts requires examining physiological and microbial changes.
Purpose of the Study:
- To evaluate the toxicity of various microplastics (PE, PET, PP, PS, PVC) using a mouse model.
- To investigate the impact of short-term MP exposure on gut microbial dynamics and host health.
Main Methods:
- Mice were exposed to different microplastics (PE, PET, PP, PS, PVC) for 7 days.
- Physiological indicators, histopathology, and high-throughput sequencing of gut microbiota were analyzed.
Main Results:
- No significant changes in body weight or serum cholesterol were observed.
- Histopathology revealed colon tissue damage, with polystyrene (PS) showing the most inflammation.
- Microplastic exposure significantly altered gut flora composition, affecting the Bacteroidetes/Firmicutes ratio and specific bacterial families and genera.
Conclusions:
- Short-term microplastic exposure induces gut inflammation and dysbiosis, indicating potential health risks.
- Microplastic-induced inflammation interferes with intestinal flora dynamics, impacting organism health.
- This study provides a research paradigm for assessing microplastic health risks in short-term exposure scenarios.
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