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Tire wear particle leachate-induced hepatotoxicity in Carassius auratus: Associations with gut microbiota dysbiosis and disrupted lipid metabolism.

Created on 18 Aug 2026

Authors

Peng Fang, Yongyu Hu, Maolin Zhang, Yuanyuan Tan, Siwen Li, Fang Xiao

Published in

Comparative biochemistry and physiology. Toxicology & pharmacology : CBP. Pages 110660. Aug 17, 2026. Epub Aug 17, 2026.

Abstract

Tire wear particles (TWPs), which are increasingly released into aquatic environments, pose a potential threat to aquatic organisms. Clarifying the hepatotoxic effects and underlying mechanisms of TWP leachate is important for ecological risk assessment and aquatic health protection. In this study, crucian carp (Carassius auratus) were exposed to environmentally relevant concentrations of TWP leachate for 28 days to investigate its hepatotoxic effects and potential mechanisms. The results revealed that TWP leachate exposure led to zinc accumulation in the intestine and liver. Additionally, we found that TWP leachate exposure significantly increased the hepatosomatic index, accompanied by hepatic necrosis, inflammatory cell infiltration, weakened antioxidant defense. Meanwhile, TWP leachate exposure induced gut microbiota dysbiosis, as characterized by reduced beneficial bacteria (Lactobacillus, Bacillus, Roseburia) and enriched opportunistic pathogens (Aeromonas, Mycobacterium). Furthermore, TWP leachate exposure also perturbed hepatic glycerophospholipid metabolism, fatty acid degradation, and AMPK/PPAR signaling. Transcriptome sequencing and qPCR analysis demonstrated that TWP leachate suppressed AMPK/PPAR signaling, upregulated lipogenic genes (FAS, ACC1), and activated inflammatory cytokines (TNF-α, IL-1β) in the liver. Collectively, this study suggests that TWP leachate-induced hepatotoxicity was highly associated with gut microbiota dysbiosis and AMPK/PPAR-related disruption of lipid metabolism in crucian carp. Our study provides new mechanistic insights for the ecotoxicological risks posed by chemical mixtures released from TWPs in aquatic ecosystems.

PMID:
42607878
Bibliographic data and abstract were imported from PubMed on 18 Aug 2026.

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