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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Detection Methods Environmental Sources Gut & Microbiome Human Health Effects Sign in to save

Microplastics cross the murine intestine and induce inflammatory cell death after phagocytosis by human monocytes and neutrophils

2025
Giulio Giustarini, Tim L P Skrabanja, Albrecht Berg, Selma van Staveren, Tom Vos, Zhaohe Zhou, Thomas Klaessens, Eva Mulder, Joëlle Klazen, Joost Smit, Raymond Pieters, Leo Koenderman, Nienke Vrisekoop

Summary

Researchers administered polystyrene microplastics orally to mice and then assessed distribution and immune cell interactions in both mice and human cells. Both 1 µm and 10 µm particles crossed the intestinal epithelium and were detected in blood and liver after 10 days, and human monocytes and neutrophils that ingested the particles underwent inflammatory cell death.

Polymers
Body Systems
Study Type In vivo

Abstract Microplastics are contaminating the environment but also our food and drinking products. In a crucial study, microplastics have been detected in circulating human blood, urging the investigation of the effects of microplastics on human health. Here we aimed to determine the distribution of microplastics after oral exposure in mice and their interactions with and effects on mouse and human innate immune cells. We established that both 1 and 10μm polystyrene (PS) particles penetrated the intestinal epithelium after oral administration and could be detected in blood and liver of mice after ten days of oral administration. Using intravital microscopy we captured the in vivo phagocytosis of 1μm PS by mouse neutrophils in the liver. Pristine PS were barely phagocytosed by primary human phagocytes, however, 1 and 10µm PS pre-incubated with plasma were readily phagocytosed by human neutrophils and monocytes. Plasma-coated 1 and 10μm PS both increased human neutrophil and monocyte cell death but only after phagocytosis. Importantly, neutrophil cell death occurred a few hours after phagocytosing a single coated 10µm PS while PS of 1µm needed to be administered at a ratio of 27 particles per cell to induce significant neutrophil cell death. Neutrophil cell death upon microplastic exposure was characterized by extracellular DNA, which together with other released DAMPs can potentially trigger inflammation. Our findings suggest that microplastics could negatively impact the immune system and human health.

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