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Updated: Apr 21, 2026

Generation and Quantitative Characterization of Functional and Polarized Biliary Epithelial Cysts
Published on: May 16, 2020
Microplastics accumulate in human bile and drive cholangiocyte senescence
Leilei Zhan1, Li Fu2, Qingli Zeng3
1The Tenth Affiliated Hospital of Southern Medical University (Dongguan People's Hospital), Dongguan, 523059, China.
None:
Microplastics are ubiquitous environmental pollutants that increasingly infiltrate human organs and tissues through multiple exposure pathways. While acute toxicological impacts have been documented, the metabolic fate of these polymers within the enterohepatic circulation remains poorly understood. Bile serves as a critical excretory fluid, and disruptions in its balance can lead to biliary tract diseases such as gallstones. However, the long-term accumulation patterns and chronic toxic effects of microplastics within the human biliary system are largely unknown. Here we show the universal presence of microplastics in human bile. Using a multimodal analytical approach, we identified six polymer types, predominantly polyethylene terephthalate and polyethylene, occurring primarily as 20-50 μm particles. We demonstrate that chronic, low-dose exposure to these microplastics induces mitochondrial dysfunction-associated senescence in cholangiocytes. Notably, targeted antioxidant intervention with melatonin effectively preserves mitochondrial function and mitigates this microplastic-induced cytotoxicity. These findings reveal the biliary system as a major reservoir for microplastic accumulation and excretion. Furthermore, they provide a mechanistic foundation for assessing the health risks of plastic pollution and developing therapeutic interventions for environmentally driven biliary disorders.
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