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Porous Se@SiO2 nanospheres treated paraquat-induced acute lung injury by resisting oxidative stress

机译:多孔Se @ SiO2纳米球通过抗氧化应激治疗百草枯引起的急性肺损伤

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摘要

Acute paraquat (PQ) poisoning is one of the most common forms of pesticide poisoning. Oxidative stress and inflammation are thought to be important mechanisms in PQ-induced acute lung injury (ALI). Selenium (Se) can scavenge intracellular free radicals directly or indirectly. In this study, we investigated whether porous Se@SiO2 nanospheres could alleviate oxidative stress and inflammation in PQ-induced ALI. Male Sprague Dawley rats and RLE-6TN cells were used in this study. Rats were categorized into 3 groups: control (n=6), PQ (n=18), and PQ + Se@SiO2 (n=18). The PQ and PQ + Se@SiO2 groups were randomly and evenly divided into 3 sub-groups according to different time points (24, 48 and 72 h) after PQ treatment. Porous Se@SiO2 nanospheres 1 mg/kg (in the PQ + Se@SiO2 group) were administered via intraperitoneal injection every 24 h. Expression levels of reduced glutathione, malondialdehyde, superoxide dismutase, reactive oxygen species (ROS), nuclear factor-κB (NF-κB), phosphorylated NF-κB (p-NF-κB), tumor necrosis factor-α and interleukin-1β were detected, and a histological analysis of rat lung tissues was performed. The results showed that the levels of ROS, malondialdehyde, NF-κB, p-NF-κB, tumor necrosis factor-α and interleukin-1β were markedly increased after PQ treatment. Glutathione and superoxide dismutase levels were reduced. However, treatment with porous Se@SiO2 nanospheres markedly alleviated PQ-induced oxidative stress and inflammation. Additionally, the results from histological examinations and wet-to-dry weight ratios of rat lung tissues showed that lung damage was reduced after porous Se@SiO2 nanosphere treatment. These data indicate that porous Se@SiO2 nanospheres may reduce NF-κB, p-NF-κB and inflammatory cytokine levels by inhibiting ROS in PQ-induced ALI. This study demonstrates that porous Se@SiO2 nanospheres may be a therapeutic method for use in the future for PQ poisoning.
机译:急性百草枯中毒是最常见的农药中毒形式之一。氧化应激和炎症被认为是PQ诱发的急性肺损伤(ALI)的重要机制。硒(Se)可以直接或间接清除细胞内自由基。在这项研究中,我们调查了多孔Se @ SiO2纳米球是否可以减轻PQ诱导的ALI中的氧化应激和炎症。这项研究使用了雄性Sprague Dawley大鼠和RLE-6TN细胞。将大鼠分为三组:对照组(n = 6),PQ(n = 18)和PQ + Se @ SiO2(n = 18)。 PQ治疗后,PQ和PQ + Se @ SiO2基团根据不同的时间点(24、48和72 h)随机均匀地分为3个亚组。每24小时通过腹膜内注射施用1 mg / kg的多孔Se @ SiO2纳米球(在PQ + Se @ SiO2组中)。还原型谷胱甘肽,丙二醛,超氧化物歧化酶,活性氧(ROS),核因子-κB(NF-κB),磷酸化NF-κB(p-NF-κB),肿瘤坏死因子-α和白介素-1β的表达水平分别为检测,并进行了大鼠肺组织的组织学分析。结果表明,经PQ处理后,ROS,丙二醛,NF-κB,p-NF-κB,肿瘤坏死因子-α和白介素-1β水平明显升高。谷胱甘肽和超氧化物歧化酶水平降低。但是,用多孔Se @ SiO2纳米球进行处理可以显着减轻PQ诱导的氧化应激和炎症。另外,从组织学检查和大鼠肺组织的干湿比得出的结果表明,多孔Se @ SiO2纳米球处理后,肺损伤得以减轻。这些数据表明,多孔的Se @ SiO2纳米球可通过抑制PQ诱导的ALI中的ROS来降低NF-κB,p-NF-κB和炎性细胞因子水平。这项研究表明,多孔Se @ SiO2纳米球可能是将来用于PQ中毒的一种治疗方法。

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