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过氧乙酰硝酸酯与臭氧对肺功能的相互作用。

Interaction of peroxyacetyl nitrate and ozone on pulmonary functions.

作者信息

Drechsler-Parks D M, Bedi J F, Horvath S M

出版信息

Am Rev Respir Dis. 1984 Dec;130(6):1033-7. doi: 10.1164/arrd.1984.130.6.1033.

Abstract

The metabolic and pulmonary function effects were investigated in 10 nonsmoking, young adult men who were exposed for 2 h (20 degrees C (wet-bulb globe temperature) (WBGT] to 4 conditions: (1) filtered air (FA), (2) 0.30 ppm peroxyacetyl nitrate (PAN), (3) 0.45 ppm ozone (O3), and (4) 0.45 ppm O3 + 0.30 ppm PAN (PAN/O3). The subjects alternated 15-min periods of rest and 20-min periods of bicycle ergometer exercise at a work load predetermined to elicit a ventilatory minute volume (VE) of 27 L/min (BTPS). Functional residual capacity (FRC) was determined pre- and postexposure. Forced vital capacity (FVC) was determined before and after exposure, and 5 min after each exercise period. Heart rate was monitored throughout the exposure, and (VE), oxygen uptake (VO2), respiratory rate (fR), and tidal volume (VT) were measured during the last 2 min of each exercise period. There were no changes in any variable consequent to FA or PAN exposure. The only metabolic changes to occur because of O3 and PAN/O3 exposure were a decrease in VT, a concomitant increase in fR, and consequently no change in VE. Both O3 and PAN/O3 induced significant (p less than 0.05) decrements in FVC, FEV1.0, FEV2.0, FEV3.0, FEF25-75%, IC, ERV, and TLC. The decrements after PAN/O3 exposure averaged 10% greater than the decrements after O3 exposure. The results suggest an interactive effect between PAN and O3, possibly explained by total oxidant load.

摘要

对10名不吸烟的年轻成年男性进行了代谢和肺功能影响的研究,他们在20℃(湿球黑球温度)(WBGT)下暴露2小时,经历4种情况:(1)过滤空气(FA),(2)0.30 ppm过氧乙酰硝酸酯(PAN),(3)0.45 ppm臭氧(O3),以及(4)0.45 ppm O3 + 0.30 ppm PAN(PAN/O3)。受试者在预定工作负荷下交替进行15分钟的休息期和20分钟的自行车测力计运动,以引出27 L/分钟(体温、气压、饱和水蒸气)的通气分钟量(VE)。在暴露前后测定功能残气量(FRC)。在暴露前后以及每个运动期后5分钟测定用力肺活量(FVC)。在整个暴露过程中监测心率,并在每个运动期的最后2分钟测量(VE)、摄氧量(VO2)、呼吸频率(fR)和潮气量(VT)。FA或PAN暴露后任何变量均无变化。由于O3和PAN/O3暴露而发生的唯一代谢变化是VT降低,fR随之增加,因此VE无变化。O3和PAN/O3均导致FVC、FEV1.0、FEV2.0、FEV3.0、FEF25 - 75%、IC、ERV和TLC显著(p < 0.05)下降。PAN/O3暴露后的下降幅度平均比O3暴露后的下降幅度大10%。结果表明PAN和OЗ之间存在交互作用,可能由总氧化剂负荷来解释。

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