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Pulmonary aspects of nitrogen dioxide toxicity

机译:二氧化氮毒性的肺方面

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Little is known of the precise location in the respiratory tract where different gaseous pollutants are absorbed. Thus, a model airway was used to study the site and mechanism of nitrogen dioxide (NO sub(2)) absorption. The model consisted of sections of perspex tube, representing the conducting airways, connected in series to a larger compartment of variable surface area, analogous to an 'alveolar sink'. The inner wall of the tube was lined with a non-woven polymer fabric, moistened with sterile water, to simulate the surface of the tracheobronchial tree where secretions are greater than 90% water. NO sub(2) gas in nitrogen was passed through the system and its concentration monitored at various positions. It was found that most of the gas reached the larger compartment, confirming that minimal absorption occurs in the upper airways. Thus, NO sub(2) penetrates the gas exchanging region of the lung. In further experiments, a natural pulmonary surfactant (CUROSURF) was exposed to 5 ppm NO sub(2) in nitrogen and post-exposure samples were scanned by electron-spin resonance (ESR) to detect the presence of free radicals. The results were negative. In an adjunct to this study, an aqueous solution of CUROSURF was exposed to NO sub(2) (100 ppm) for 48 h to determine its effect on surface tension. Results have indicated that exposure to NO sub(2) has a marginal effect on the ability of CUROSURF to lower surface tension.
机译:对于吸收不同气体污染物的呼吸道的精确位置知之甚少。因此,使用模型气道来研究二氧化氮(NO sub(2))吸收的部位和机理。该模型由代表传导性气道的有机玻璃管部分组成,该部分与一个可变表面积的较大隔间串联连接,类似于“肺泡池”。管的内壁衬有非织造的聚合物织物,该织物用无菌水润湿,以模拟分泌大于90%水的气管支气管树的表面。氮气中没有sub(2)气体通过系统,并在各个位置监测其浓度。发现大部分气体到达较大的隔室,从而确认在上呼吸道中吸收最少。因此,NO sub(2)穿透肺的气体交换区域。在进一步的实验中,将天然肺表面活性剂(CUROSURF)暴露在氮气中的5 ppm NO sub(2)中,并通过电子自旋共振(ESR)扫描暴露后的样品,以检测自由基的存在。结果为阴性。作为这项研究的补充,将CUROSURF的水溶液暴露于NO sub(2)(100 ppm)中48小时,以确定其对表面张力的影响。结果表明,暴露于NO sub(2)对CUROSURF降低表面张力的能力影响很小。

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