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首页> 外文期刊>Environmental health perspectives. >Mouse Lung Structure and Function after Long-Term Exposure to an Atmospheric Carbon Dioxide Level Predicted by Climate Change Modeling
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Mouse Lung Structure and Function after Long-Term Exposure to an Atmospheric Carbon Dioxide Level Predicted by Climate Change Modeling

机译:长期暴露于气候变化建模预测的大气中二氧化碳水平后的小鼠肺结构和功能

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Background: Climate change models predict that atmospheric carbon dioxide [ CO 2 ] levels will be between 700 and 900 ppm within the next 80 y. Despite this, the direct physiological effects of exposure to slightly elevated atmospheric CO 2 (as compared with ~ 410 ppm experienced today), especially when exposures extend from preconception to adulthood, have not been thoroughly studied. Objectives: In this study we aimed to assess the respiratory structure and function effects of long-term exposure to 890 ppm CO 2 from preconception to adulthood using a mouse model. Methods: We exposed mice to CO 2 ( ~ 890 ppm ) from prepregnancy, through the in utero and early life periods, until 3 months of age, at which point we assessed respiratory function using the forced oscillation technique, and lung structure. Results: CO 2 exposure resulted in a range of respiratory impairments, particularly in female mice, including higher tissue elastance, longer chord length, and lower lung compliance. Importantly, we also assessed the lung function of the dams that gave birth to our experimental subjects. Even though these mice had been exposed to the same level of increased CO 2 for a similar amount of time ( ~ 8 wk ), we measured no impairments in lung function. This suggests that the early life period, when lungs are undergoing rapid growth and development, is particularly sensitive to CO 2 . Discussion: To the best of our knowledge, this study, for the first time, shows that long-term exposure to environmentally relevant levels of CO 2 can impact respiratory function in the mouse.
机译:背景:气候变化模型预测,在接下来的80 y内,大气二氧化碳[CO 2]水平将在700至900ppm之间。尽管如此,暴露于略高的大气二氧化碳二氧化碳二氧化碳二氧化碳二氧化碳二氧化碳的直接生理效果(与今天经历的〜410ppm相比),特别是当曝光从预识到成年期延伸时,尚未彻底研究。目的:在本研究中,我们旨在评估使用小鼠模型从先进化到Adulthood的890ppm CO 2的呼吸结构和功能效应。方法:通过预孕,通过中子宫和早期寿命,将小鼠暴露于Co 2(〜890ppm),直至3个月,此时我们使用强制振荡技术和肺结构评估呼吸功能。结果:CO 2暴露导致一系列呼吸损伤,特别是在雌性小鼠中,包括较高的组织弹性,更长的弦长和低肺顺应性。重要的是,我们还评估了潜力坝的肺功能,让我们生育了我们的实验科目。即使这些小鼠被暴露于相同的水平增加的CO 2,对于类似的时间量(〜8周),我们在肺功能下没有测量损伤。这表明早期寿命,当肺部正在进行快速增长和发育时,对CO 2特别敏感。讨论:据我们所知,这项研究首次表明,长期暴露于环保水平的CO 2可以影响小鼠的呼吸功能。

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