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吸入甲苯对小鼠二氧化碳产生及运动活性的影响。

Effects of toluene inhalation on carbon dioxide production and locomotor activity in mice.

作者信息

Bushnell P J, Evans H L, Palmes E D

出版信息

Fundam Appl Toxicol. 1985 Oct;5(5):971-7. doi: 10.1016/0272-0590(85)90178-2.

Abstract

Rapid and noninvasive tests of locomotor activity (LA) and carbon dioxide production (minute volume expired CO2, or VECO2) in mice were sensitive to the effects of inhaled toluene. Compared to sham exposures, toluene at 100 ppm had no effect on LA or VECO2; at 1000 and 3000 ppm, LA increased during exposure, while VECO2 was suppressed for 6 to 24 min at the beginning of exposure. In a nominal 10,000-ppm exposure, toluene levels were increased from 1000 to 10,500 ppm in 60 min. At these levels, toluene abolished LA at concentrations above 8000 ppm, and suppressed VECO2 throughout exposure. During recovery from toluene-induced narcosis, both LA and VECO2 were elevated above control. In other studies, groups of mice inhaled toluene daily at 0, 100, 1000, or 3000 ppm, 5 hr/day for 8 or 90 days, and were tested individually 30 to 90 min after termination of exposure. Under these conditions, toluene decreased postexposure VECO2 for 1-2 weeks, altered the weekly pattern of change in VECO2, and did not affect LA. No effects of repeated, daily exposure to toluene were observed on body weight. These results demonstrate the utility of the present method to detect changes in LA and metabolic rate resulting from toluene inhalation, and suggest that different mechanisms are involved in the behavioral and metabolic responses to toluene inhalation.

摘要

对小鼠运动活性(LA)和二氧化碳产生量(每分钟呼出二氧化碳量,即VECO2)进行的快速非侵入性测试对吸入甲苯的影响很敏感。与假暴露相比,100 ppm的甲苯对LA或VECO2没有影响;在1000和3000 ppm时,暴露期间LA增加,而暴露开始时VECO2被抑制6至24分钟。在名义上10,000 ppm的暴露中,甲苯水平在60分钟内从1000 ppm增加到10,500 ppm。在这些水平下,甲苯在浓度高于8000 ppm时消除了LA,并在整个暴露过程中抑制了VECO2。从甲苯诱导的麻醉中恢复期间,LA和VECO2均高于对照水平。在其他研究中,几组小鼠每天吸入0、100、1000或3000 ppm的甲苯,每天5小时,持续8天或90天,并在暴露终止后30至90分钟进行个体测试。在这些条件下,甲苯使暴露后VECO2降低1至2周,改变了VECO2的每周变化模式,并且不影响LA。未观察到重复每日暴露于甲苯对体重有影响。这些结果证明了本方法在检测因吸入甲苯导致的LA和代谢率变化方面的实用性,并表明甲苯吸入的行为和代谢反应涉及不同的机制。

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