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暴露于二氧化氮对肺泡上皮细胞单层中圆顶形成的影响。

Effects of exposure to NO2 on dome formation in alveolar epithelial cell monolayers.

作者信息

Cheek J M, Postlethwait E M, Shaw M E, Crandall E D

出版信息

Environ Res. 1987 Feb;42(1):1-11. doi: 10.1016/s0013-9351(87)80002-6.

Abstract

Primary cultured monolayers of rat Type II pneumocytes were used to investigate the effects of NO2 on alveolar epithelial barrier properties. Such monlayers form fluid-filled domes which are thought to result from active solute transport from medium to substratum, with water following passively. Using dome formation as a transport marker, 5-day-old cultures were directly exposed to 30 ppm NO2 in 5% CO2/air at 25 degrees C by cyclically tilting culture plates from side to side such that both halves of the monolayer were exposed during each cycle. Exposures consisted of 10 cycles of 4 min each (2 min per side), for a cell exposure time of 20 min. Control plates were simultaneously exposed to 5% CO2/air under identical conditions. Twenty-four hours after exposure, NO2-exposed monolayers exhibited significant decreases in dome density and individual dome volume as compared to controls. By 48 hr postexposure, differences between NO2-exposed and control values were less but remained significant. Control monolayers were essentially unaffected by exposure to 5% CO2/air. These results show that short-term sublethal exposures to NO2 produce a decrease in dome formation in Type II alveolar epithelial cell monolayers. This finding is most likely due to a decrease in the active transepithelial sodium transport rate and/or an increase in the permeability of cell membranes or tight junctions.

摘要

原代培养的大鼠II型肺细胞单层用于研究二氧化氮对肺泡上皮屏障特性的影响。这种单层形成充满液体的圆顶,被认为是由于溶质从培养基到基质的主动转运,随后水被动跟随所致。以圆顶形成为转运标志物,通过将培养板左右循环倾斜,使5日龄培养物在25℃下直接暴露于含5%二氧化碳/空气的30 ppm二氧化氮中,这样在每个循环中单层的两半都能暴露。暴露由10个循环组成,每个循环4分钟(每侧2分钟),细胞暴露时间为20分钟。对照板在相同条件下同时暴露于5%二氧化碳/空气。暴露24小时后,与对照相比,暴露于二氧化氮的单层圆顶密度和单个圆顶体积显著降低。暴露后48小时,暴露于二氧化氮的值与对照值之间的差异减小但仍显著。对照单层基本上不受暴露于5%二氧化碳/空气的影响。这些结果表明,短期亚致死性暴露于二氧化氮会导致II型肺泡上皮细胞单层中圆顶形成减少。这一发现很可能是由于跨上皮钠主动转运速率降低和/或细胞膜或紧密连接的通透性增加所致。

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