School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, Xuelin Road, Nanjing, 210023, People's Republic of China.
Environ Sci Pollut Res Int. 2024 Jan;31(4):6527-6542. doi: 10.1007/s11356-023-31564-8. Epub 2023 Dec 28.
Microplastics (MPs) are known to cause liver toxicity as they can spread through the food chain. Most researches on their toxicity have focused on individual organs, neglecting the crucial "gut-liver axis"-a bidirectional communication pathway between the gut and liver. Probiotics have shown promise in modulating the effects of environmental pollutants. In this study, we exposed mice to Lactobacillus rhamnosus GG (LGG, 100 mg/kg b.w./d) and/or polystyrene microplastics (PS-MPs, 5 mg/kg b.w./d) for 28 d via gavage to investigate how probiotics influence live toxicity through the gut-liver axis. Our results demonstrated that PS-MPs induced liver inflammation (increased IL-6 and TNF-α) and disrupted lipid metabolism. However, when combined with LGG, these effects were alleviated. LGG also improved colon health, rectifying ciliary defects and abnormal mucus secretion caused by PS-MPs. Furthermore, LGG improved gut microbiota dysbiosis induced by PS-MPs. Metabolomics and gene expression analysis (Cyp7a1 and Cyp7b1) indicated that LGG modulated bile acid metabolism. In summary, LGG appears to protect the liver by maintaining gut homeostasis, enhancing gut barrier integrity, and reducing the liver inflammation. These findings confirm the potential of LGG to modulate liver toxicity caused by PS-MPs through the gut-liver axis, offering insights into probiotics' application for environmental pollutant detoxification.
微塑料(MPs)被认为会引起肝毒性,因为它们可以通过食物链传播。大多数关于其毒性的研究都集中在单个器官上,忽视了关键的“肠-肝轴”——肠道和肝脏之间的双向通讯途径。益生菌在调节环境污染物的影响方面显示出了希望。在这项研究中,我们通过灌胃将鼠李糖乳杆菌 GG(LGG,100mg/kg bw/d)和/或聚苯乙烯微塑料(PS-MPs,5mg/kg bw/d)暴露于小鼠体内 28 天,以研究益生菌如何通过肠-肝轴影响肝脏毒性。我们的结果表明,PS-MPs 诱导肝脏炎症(增加 IL-6 和 TNF-α)并破坏脂质代谢。然而,当与 LGG 结合时,这些作用得到缓解。LGG 还改善了结肠健康,纠正了 PS-MPs 引起的纤毛缺陷和异常粘液分泌。此外,LGG 改善了 PS-MPs 引起的肠道微生物群落失调。代谢组学和基因表达分析(Cyp7a1 和 Cyp7b1)表明,LGG 调节胆汁酸代谢。总之,LGG 通过维持肠道内稳态、增强肠道屏障完整性和减少肝脏炎症来保护肝脏。这些发现证实了 LGG 通过肠-肝轴调节 PS-MPs 引起的肝脏毒性的潜力,为益生菌在环境污染物解毒中的应用提供了新的见解。