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The interaction of microplastics with the ruminal ecosystem in vitro
J Eichinger1, J Seifert2, J S Sáenz2
1Technical University of Munich, Chair of Animal Nutrition, TUM School of Life Sciences, Freising, Bavaria, Germany; Ruminant Nutrition and Emissions, Agroscope, Posieux, Switzerland.
Journal of Hazardous Materials
|November 20, 2025
Summary
Farm animals ingest microplastics (MP) in feed, impacting their rumen microbiome. This study found MPs alter rumen microbial function and are partially degraded, raising food safety concerns.
Area of Science:
- Environmental Science
- Microbiology
- Animal Science
Background:
- Mismanaged plastic waste leads to microplastic (MP) contamination in environments.
- Farm animals are increasingly exposed to MPs through contaminated feed.
- The interaction between MPs and the rumen microbiome is not well understood.
Purpose of the Study:
- To investigate the in vitro interactions between various microplastics and the rumen microbiome.
- To assess the impact of different MP types, sizes, and doses on rumen fermentation and microbial activity.
Main Methods:
- Utilized the Hohenheim Gas Test for in vitro incubation of five MP chemical species in two particle-size classes and six doses.
- Incubations were performed with rumen fluid and either hay or barley.
- Analyzed cumulative gas production, pH, dry-matter disappearance, volatile fatty acids, metaproteomics, and metabolomics.
Main Results:
- Microplastics consistently reduced cumulative gas production regardless of polymer type, particle size, or dose.
- Total dry-matter degradation was enhanced dose-dependently by MP exposure.
- Metaproteomics revealed shifts in microbial communities (Bacteroidetes to Firmicutes) and altered protein abundances in barley incubations.
Conclusions:
- Rumen microbes interact with and partially degrade microplastics.
- Progressive MP size reduction in the rumen may lead to translocation into animal tissues.
- Further in vivo studies are crucial to understand animal health and food safety implications.
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