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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >The Customizable E-cigarette Resistance Influences Toxicological Outcomes: Lung Degeneration, Inflammation, and Oxidative Stress-Induced in a Rat Model
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The Customizable E-cigarette Resistance Influences Toxicological Outcomes: Lung Degeneration, Inflammation, and Oxidative Stress-Induced in a Rat Model

机译:可定制的电子卷烟阻力影响毒理学结果:肺变性,炎症和大鼠模型中的氧化应激诱导

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Despite the knowledge gap regarding the risk-benefit ratio of the electronic cigarette (e-cig), its use has grown exponentially, even in teenagers. E-cig vapor contains carcinogenic compounds (eg, formaldehyde, acetaldehyde, and acrolein) and free radicals, especially reactive oxygen species (ROS) that cause toxicological effects, including DNA damage. The role of e-cig voltage customization on molecule generation has been reported, but the effects of the resistance on e-cig emissions and toxicity are unknown. Here, we show that the manipulation of e-cig resistance influences the carbonyls production from nonnicotine vapor and the oxidative and inflammatory status in a rat model. Fixing the voltage at the conventional 3.5 V, we observed that the amount of the selected aldehydes increased as the resistance decreased from 1.5 to 0.25 Omega. Under these conditions, we exposed Sprague Dawley rats to e-cig aerosol for 28 days, and we studied the pulmonary inflammation, oxidative stress, tissue damage, and blood homeostasis. We found a perturbation of the antioxidant and phase II enzymes, probably related to the increased ROS levels due to the enhanced xanthine oxidase and P450-linked monooxygenases. Furthermore, frames from scanning electron microscope showed a disorganization of alveolar and bronchial epithelium in 0.25 Omega group. Overall, various toxicological outcomes, widely recognized as smoke-related injuries, can potentially occur in e-cig consumers who use low-voltage and resistance device. Our study suggests that certain "tips for vaping safety" cannot be established, and encourages further independent investigations to help public health agencies in regulating the e-cig use.
机译:尽管有关电子烟病的风险效益比(E-CIG)的知识差距,但它的使用甚至在青少年中也具有呈指数增长。 E-CIG蒸气含有致癌化合物(例如,甲醛,乙醛和丙烯醛)和自由基,特别是导致毒理学作用的活性氧物质(ROS),包括DNA损伤。据报道了E-CIG电压定制对分子产生的作用,但抗性对E-CIG排放和毒性的影响是未知的。在这里,我们表明,e-cig抗性的操纵影响了大鼠模型中的非偶象蒸气和氧化和炎症状态的羰基生产。在常规3.5V处固定电压,我们观察到随着电阻的增加,所选醛的量从1.5降低到0.25ω。在这些条件下,我们将Sprague Dawley大鼠暴露于E-Cig Aerosol 28天,我们研究了肺炎炎症,氧化应激,组织损伤和血型稳态。我们发现由于增强的黄嘌呤氧化酶和P450-连接的单氧基酶,抗氧化剂和II酶的扰动可能与增加的ROS水平相关。此外,来自扫描电子显微镜的框架显示在0.25ω组中的肺泡和支气管上皮的紊乱。总体而言,各种毒理学结果,被广泛认可为烟雾相关的伤害,可能发生在使用低压和电阻装置的E-CIG消费者中。我们的研究表明,无法建立某些“审计安全提示”,并鼓励进一步的独立调查,帮助公共卫生机构调节电子传递使用。

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