Nrf2 deficiency aggravates hepatic cadmium accumulation, inflammatory response and subsequent injury induced by chronic cadmium exposure in mice

IF 3.4 3区 医学 Q2 PHARMACOLOGY & PHARMACY Toxicology and applied pharmacology Pub Date : 2025-04-01 Epub Date: 2025-02-10 DOI:10.1016/j.taap.2025.117263
Chengjie Chen , Xue Han , Ning Xu , Wei Shen , Gang Wang , Junying Jiao , Weiwei Kong , Jiaxin Yu , Jingqi Fu , Jingbo Pi
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Abstract

Prolonged cadmium (Cd) exposure leads to Cd accumulation and oxidative damage in the liver. Nuclear factor erythroid-derived 2-like 2 (NRF2) plays a vital role in preventing acute hepatic toxicity of Cd. However, the participation of NRF2 in chronic liver injury, especially in the context of chronic Cd exposure, has rarely been investigated. Here, we explored the involvement of NRF2 in Cd-induced liver injury using Nrf2 knockout (Nrf2-KO) mice chronically exposed to Cd in drinking water (100 or 200 ppm) for up to 24 weeks. We found that absence of Nrf2 exacerbated the Cd-induced liver fibrosis, as evaluated by Masson's trichrome staining and increased expression of fibrosis-associated proteins. Mechanistic investigations using the liver tissues from the animals with 100 ppm Cd exposure for 16 weeks, in which no obvious hepatic fibrosis was observed in both genotypes, revealed that there were diminished expressions of antioxidant and detoxification genes and elevated Cd levels in the blood and liver of Nrf2-KO mice compared with those in wild-type (Nrf2-WT) under basal and/or Cd-exposed conditions. Notably, a bulk RNA-seq of the liver tissues showed lowered mRNA levels of genes related to xenobiotic and glutathione metabolic processes, but elevated mRNA expression of leukocyte migration pathway and adaptive immune pathway in Nrf2-KO mice relative to Nrf2-WT controls, either under basal or Cd-exposed conditions. Our findings demonstrated that Nrf2-KO mice are vulnerable to chronic Cd exposure-induced liver fibrosis, which is partially attributed to a compromised NRF2-mediated antioxidant response, lowered metallothionein expression and subsequent Cd accumulation and inflammatory response in the tissues.
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Nrf2缺乏可加重小鼠慢性镉暴露引起的肝脏镉积累、炎症反应和随后的损伤。
长期接触镉(Cd)会导致镉在肝脏的积累和氧化损伤。核因子红细胞衍生2-样2 (NRF2)在预防Cd的急性肝毒性中起着至关重要的作用。然而,NRF2在慢性肝损伤中的参与,特别是在慢性Cd暴露的背景下,很少被研究。在这里,我们利用NRF2敲除(NRF2 - ko)小鼠长期暴露于饮用水(100或200 ppm)中的Cd长达24 周,探讨了NRF2在Cd诱导的肝损伤中的作用。我们发现,通过马松三色染色和纤维化相关蛋白的表达增加,Nrf2的缺失加重了cd诱导的肝纤维化。对接触100 ppm Cd 16 周的动物肝脏组织进行机制研究,两种基因型均未观察到明显的肝纤维化,结果显示,与野生型(Nrf2-WT)相比,在基础和/或Cd暴露条件下,Nrf2-KO小鼠血液和肝脏中的抗氧化和解毒基因表达减少,Cd水平升高。值得注意的是,肝脏组织的大量rna测序显示,与Nrf2-WT对照组相比,Nrf2-KO小鼠的外源和谷胱甘肽代谢过程相关基因的mRNA水平降低,但白细胞迁移途径和适应性免疫途径的mRNA表达升高,无论是在基础条件还是cd暴露条件下。我们的研究结果表明,Nrf2-KO小鼠易受慢性Cd暴露诱导的肝纤维化,这部分是由于nrf2介导的抗氧化反应受损,金属硫蛋白表达降低以及随后组织中Cd积累和炎症反应。
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来源期刊
CiteScore
6.80
自引率
2.60%
发文量
309
审稿时长
32 days
期刊介绍: Toxicology and Applied Pharmacology publishes original scientific research of relevance to animals or humans pertaining to the action of chemicals, drugs, or chemically-defined natural products. Regular articles address mechanistic approaches to physiological, pharmacologic, biochemical, cellular, or molecular understanding of toxicologic/pathologic lesions and to methods used to describe these responses. Safety Science articles address outstanding state-of-the-art preclinical and human translational characterization of drug and chemical safety employing cutting-edge science. Highly significant Regulatory Safety Science articles will also be considered in this category. Papers concerned with alternatives to the use of experimental animals are encouraged. Short articles report on high impact studies of broad interest to readers of TAAP that would benefit from rapid publication. These articles should contain no more than a combined total of four figures and tables. Authors should include in their cover letter the justification for consideration of their manuscript as a short article.
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