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首页> 外文期刊>Science of the total environment >Arsenic exposure induces intestinal barrier damage and consequent activation of gut-liver axis leading to inflammation and pyroptosis of liver in ducks
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Arsenic exposure induces intestinal barrier damage and consequent activation of gut-liver axis leading to inflammation and pyroptosis of liver in ducks

机译:砷的暴露诱导肠道阻挡损伤并随后导致鸭子肝脏炎症和糊状症的激活

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摘要

Arsenic is an important hazardous metalloid commonly found in polluted soil, rivers and groundwater. However, few studies exist regarding the effect of arsenic trioxide (ATO) on the gut-liver axis and consequent hepatotox-icity in waterfowl. Here, we investigated the influence of ATO on duck intestines and livers, and explored the role of the gut-liver axis in ATO-induced hepatotoxicity and intestinal toxicity. Our results demonstrated that ATO-exposure induced intestinal damage, liver inflammatory cell infiltration and vesicle steatosis. Additionally, the in-testinal microbiota community in ATO-exposed ducks displayed significantly decreased α-diversity and an al-tered bacterial composition. Moreover, ATO-exposure markedly reduced the expression of intestinal barrier-related proteins (Claudin-1, MUC2, ZO-1 and Occludin), resulting in increased intestinal permeability and ele-vated lipopolysaccharide levels. Simultaneously, ATO-exposure also upregulated pyroptosis-related index levels in the liver and jejunum, and increased pro-inflammatory cytokine production (IFN-γ, TNF-α, IL-18, and IL-1β). Our further mechanistic studies showed that ATO-induced liver and jejunum inflammation were provoked by the activation of the LPS/TLR4/NF-κB signaling pathway and NLRP3 inflammasome. In summary, these results manifested that ATO exposure can cause liver and jejunal inflammation and pyroptosis, and the indirect gut-liver axis pathway may play an essential role in the potential mechanism of ATO-induced hepatotoxicity.
机译:砷是污染土壤,河流和地下水中常见的重要危险金属。然而,关于砷(ATO)对肠道 - 肝轴上的影响很少有关于水禽中的肝毒素 - 冰酸的研究。在这里,我们调查了ATO对鸭肉和肝脏的影响,并探讨了肠肝轴在ATO诱导的肝毒性和肠道毒性的作用。我们的结果表明,曝光诱导肠损伤,肝脏炎症细胞浸润和囊泡脂肪变性。另外,ATO-暴露鸭中的近脑脊液群落显着降低了α-多样性和AL-TERED细菌组合物。此外,ATO-曝光明显降低了肠道屏障相关蛋白(Claudin-1,MUC2,ZO-1和闭塞素)的表达,导致肠道渗透性增加和ELE吸引脂多糖水平增加。同时,ATO-曝光也上调肝脏和Jejunum的糊化酶相关的指数水平,以及增加的促炎细胞因子产生(IFN-γ,TNF-α,IL-18和IL-1β)。我们的进一步机制研究表明,通过激活LPS / TLR4 / NF-κB信号传导途径和NLRP3炎症来激发ATO诱导的肝脏和Jejunum炎症。总之,这些结果表现出ATO暴露会导致肝脏和jejunal炎症和糊菌,并且间接肠道肝轴线途径可能在ATO诱导的肝毒性的潜在机制中起重要作用。

著录项

  • 来源
    《Science of the total environment 》 |2021年第20期| 147780.1-147780.13| 共13页
  • 作者单位

    College of Veterinary Medicine Key Laboratory of Animal Vaccine Development Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou 510642 China;

    College of Veterinary Medicine Key Laboratory of Animal Vaccine Development Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou 510642 China;

    College of Veterinary Medicine Key Laboratory of Animal Vaccine Development Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou 510642 China;

    College of Veterinary Medicine Key Laboratory of Animal Vaccine Development Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou 510642 China;

    College of Veterinary Medicine Key Laboratory of Animal Vaccine Development Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou 510642 China;

    College of Veterinary Medicine Key Laboratory of Animal Vaccine Development Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou 510642 China;

    College of Veterinary Medicine Key Laboratory of Animal Vaccine Development Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou 510642 China;

    College of Veterinary Medicine Key Laboratory of Animal Vaccine Development Ministry of Agriculture and Rural Affairs South China Agricultural University Guangzhou 510642 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Arsenic; Intestinal microbiota; Gut-liver axis; Pyroptosis; Duck;

    机译:砷;肠道微生物群;肝轴;糊酶;鸭子;

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