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Hepatic Lipid Accumulation and Nrf2 Expression following Perinatal and Peripubertal Exposure to Bisphenol A in a Mouse Model of Nonalcoholic Liver Disease

机译:围产期和青春期暴露于双酚A在非酒精性肝病的小鼠模型中肝脂质积累和Nrf2表达。

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Background: Exposure to chemicals during critical windows of development may re-program liver for increased risk of nonalcoholic fatty liver disease (NAFLD). Bisphenol A (BPA), a plastics component, has been described to impart adverse effects during gestational and lactational exposure. Our work has pointed to nuclear factor E2-related factor 2 (Nrf2) being a modulator of hepatic lipid accumulation in models of NAFLD. Objectives: To determine if chemical exposure can prime liver for steatosis via modulation of NRF2 and epigenetic mechanisms. Methods: Utilizing BPA as a model exposure, pregnant CD-1 mice were administered 25 μg/kg/day BPA via osmotic minipumps from gestational day 8 through postnatal day (PND)16. The offspring were weaned on PND21 and exposed to same dose of BPA via their drinking water through PND35. Tissues were collected from pups at week 5 (W5), and their littermates at week 39 (W39). Results: BPA increased hepatic lipid content concomitant with increased Nrf2 and pro-lipogenic enzyme expression at W5 and W39 in female offspring. BPA exposure increased Nrf2 binding to a putative antioxidant response element consensus sequence in the sterol regulatory-element binding protein-1c ( Srebp-1c ) promoter. Known Nrf2 activators increased SREBP-1C promoter reporter activity in HepG2 cells. Methylated DNA immunoprecipitation-PCR and pyrosequencing revealed that developmental BPA exposure induced hypomethylation of the Nrf2 and Srebp-1c promoters in livers of W5 mice, which was more prominent in W39 mice than in others. Conclusion: Exposure to a xenobiotic during early development induced persistent fat accumulation via hypomethylation of lipogenic genes. Moreover, increased Nrf2 recruitment to the Srebp-1c promoter in livers of BPA-exposed mice was observed. Overall, the underlying mechanisms described a broader impact beyond BPA exposure and can be applied to understand other models of NAFLD. https://doi.org/10.1289/EHP664.
机译:背景:在关键的发育期接触化学物质可能会重新编程肝脏,以增加非酒精性脂肪肝疾病(NAFLD)的风险。据介绍,双酚A(BPA)是一种塑料成分,在妊娠和哺乳期接触时会产生不利影响。我们的工作已指出核因子E2相关因子2(Nrf2)是NAFLD模型中肝脂质蓄积的调节剂。目的:确定化学暴露是否可以通过调节NRF2和表观遗传机制引发肝脏脂肪变性。方法:采用双酚A作为模型暴露,从妊娠第8天到产后第16天,通过渗透性微型泵对怀孕的CD-1小鼠给予25μg/ kg /天的双酚A。后代在PND21上断奶,并通过PND35通过饮用水接触相同剂量的BPA。在第5周(W5)从幼崽收集组织,在第39周(W39)收集同窝仔。结果:在雌性后代中,BPA增加了肝脏脂质含量,同时在W5和W39处增加了Nrf2和促脂肪酶的表达。 BPA暴露会增加Nrf2与固醇调节元素结合蛋白1c(Srebp-1c)启动子中假定的抗氧化剂反应元件共有序列的结合。已知的Nrf2激活剂在HepG2细胞中增加了SREBP-1C启动子报告基因的活性。甲基化的DNA免疫沉淀-PCR和焦磷酸测序显示,发育中的BPA暴露引起W5小鼠肝脏Nrf2和Srebp-1c启动子的低甲基化,在W39小鼠中比其他小鼠更突出。结论:在早期发育过程中暴露于异源生物会通过脂肪形成基因的低甲基化而导致持续的脂肪蓄积。此外,在暴露于BPA的小鼠肝脏中,观察到Nrf2向Srebp-1c启动子募集的增加。总体而言,基本机制描述了除BPA暴露之外的更广泛影响,可用于理解NAFLD的其他模型。 https://doi.org/10.1289/EHP664。

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