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Aortic Oxidative Stress Inflammation and DNA Damage Following Pulmonary Exposure to Cerium Oxide Nanoparticles in a Rat Model of Vascular Injury

机译:在大鼠血管损伤模型中肺暴露于氧化铈纳米粒子后的主动脉氧化应激炎症和DNA损伤。

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摘要

Pulmonary exposure to cerium oxide nanoparticles (CeO2 NPs) can occur either at the workplace, or due to their release in the environment. Inhaled CeO2 NPs are known to cross the alveolar–capillary barrier and reach various parts of the body, including the vasculature. The anticancer drug cisplatin (CP) causes vascular damage. However, the effects CeO2 NPs on vascular homeostasis in a rat model of CP-induced vascular injury remain unclear. Here, we assessed the impact and underlying mechanism of pulmonary exposure to CeO2 NPs on aorta in rats given a single intraperitoneal injection of cisplatin (CP, 6 mg/kg) to induce vascular damage. Six days later, the rats were intratracheally instilled with either CeO2 NPs (1 mg/kg) or saline (control), and various variables were studied 24 h thereafter in the aortic tissue. The concentration of reduced glutathione and the activity of catalase were significantly increased in the CP + CeO2 NPs group compared with both the CP + saline and the CeO2 NPs groups. The activity of superoxide dismutase was significantly decreased in the CP + CeO2 NPs group compared with both the CP + saline and CeO2 NPs groups. The expression of nuclear factor erythroid-derived 2-like 2 (Nrf2) by the nuclei of smooth muscles and endocardial cells assessed by immunohistochemistry was significantly augmented in CeO2 NPs versus saline, in CP + saline versus saline, and in CP + CeO2 NPs versus CeO2 NPs. Moreover, the concentrations of total nitric oxide, lipid peroxidation and 8-hydroxy-2-deoxyguanosine were significantly elevated in the CP + CeO2 NPs group compared with both the CP + saline and the CeO2 NPs groups. Similarly, compared with both the CP + saline and CeO2 NPs groups, the combination of CP and CeO2 NPs significantly elevated the concentrations of interleukin-6 and tumour necrosis factor-α. Additionally, aortic DNA damage assessed by Comet assay was significantly increased in CeO2 NPs compared with saline, and in CP + saline versus saline, and all these effects were significantly aggravated by the combination of CP and CeO2 NPs. We conclude that pulmonary exposure to CeO2 NPs aggravates vascular toxicity in animal model of vascular injury through mechanisms involving oxidative stress, Nrf2 expression, inflammation and DNA damage.
机译:肺部暴露于氧化铈纳米颗粒(CeO2 NPs)可能在工作场所或由于其在环境中的释放而发生。已知吸入的CeO2 NP穿过肺泡-毛细血管屏障,并到达身体的各个部位,包括脉管系统。抗癌药顺铂(CP)引起血管损伤。然而,CeO2 NPs对CP诱发的血管损伤大鼠模型中血管稳态的影响仍不清楚。在这里,我们评估了腹腔内注射顺铂(CP,6 mg / kg)引起血管损伤的大鼠肺部暴露于CeO2 NPs对主动脉的影响及其潜在机制。六天后,向大鼠气管内滴注CeO2 NPs(1 mg / kg)或生理盐水(对照组),然后在主动脉组织中研究24小时的各种变量。与CP +生理盐水和CeO2 NPs组相比,CP + CeO2 NPs组中还原型谷胱甘肽的浓度和过氧化氢酶活性显着增加。与CP +生理盐水和CeO2 NPs组相比,CP + CeO2 NPs组中超氧化物歧化酶的活性均显着降低。 CeO2 NPs对生理盐水,CP +生理盐水对生理盐水以及CP + CeO2 NP对血浆CeO2 NPs明显增加了通过免疫组织化学评估的平滑肌和心内膜细胞核表达的核因子类胡萝卜素衍生的2样2(Nrf2)的表达。 CeO2 NP。此外,与CP +盐水和CeO2 NPs组相比,CP + CeO2 NPs组的总一氧化氮,脂质过氧化和8-羟基-2-脱氧鸟苷的浓度均显着升高。同样,与CP +生理盐水和CeO2 NPs组相比,CP和CeO2 NPs的组合显着提高了白介素6和肿瘤坏死因子-α的浓度。另外,与盐水相比,CeO 2 NPs和CP +盐水与盐水相比,通过Comet分析评估的主动脉DNA损伤显着增加,并且CP和CeO < sub> 2 个NP。我们得出的结论是,肺部暴露于CeO 2 NPs通过涉及氧化应激,Nrf2表达,炎症和DNA损伤的机制加剧了血管损伤动物模型中的血管毒性。

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