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Microplastics impair liver function and increase fat in mice (opens in a new tab)
news-medical.net · 2026-09-29
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Microplastics impair liver function and increase fat in mice
news-medical.net · 2026-09-29
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Size-dependent plastic exposure disrupts macrophage function and tissue-specific metabolism
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Claim 1 of 5Not checkedMicroplastics appear capable of significantly impairing the function of phagocytes in the liver, at least in mice.View evidenceHide evidence
As statedsignificantly
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Claim 2 of 5Not checkedThe reported effect in mice was that this disruption of Kupffer cell macrophages in turn disrupted liver metabolism and increased the build-up of fat inside the liver.View evidenceHide evidence
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Claim 3 of 5Not checkedThe article says the researchers orally administered microplastics to mice once a week for 12 weeks and then observed large amounts of microplastics taken up by Kupffer cells.View evidenceHide evidence
As stated12 weeks
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Claim 4 of 5Not checkedThe story says that particles similar in size to bacteria were particularly harmful to the liver, while ten-times-smaller nanoparticles had less pronounced macrophage clogging and instead accumulated in brown adipose tissue.View evidenceHide evidence
As statedten times smaller
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Claim 5 of 5Not checkedThe article identifies the study as a joint German-Austrian project led by the University of Bonn and says it was published in Nature Metabolism.View evidenceHide evidence
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Size-dependent plastic exposure disrupts macrophage function and tissue-specific metabolism
Nature Metabolism · 2026
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Papers considered
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Crossref, Europe PMC, PubMed · 40 candidate papers
Size-dependent plastic exposure disrupts macrophage function and tissue-specific metabolism
Nature Metabolism · 2026 · Crossref
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Nature Metabolism · 2026 · Crossref
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And 34 more candidates considered.