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有机溶剂吸入时的耐受性。

Tolerance during inhalation of organic solvents.

作者信息

Kjellstrand P, Månsson L, Holmquist B, Jonsson I

机构信息

Department of Zoophysiology, University of Lund, Sweden.

出版信息

Pharmacol Toxicol. 1990 May;66(5):409-14. doi: 10.1111/j.1600-0773.1990.tb00770.x.

Abstract

Inhalation of several different halogenated solvents stimulated motor activity in mice. During prolonged exposure acute tolerance developed. The development of tolerance depended both on the schedule of exposure, and on the solvent. Exposure to trichloroethylene induced both stimulation and tolerance while the same degree of stimulation induced by 1,1,1-trichloroethane caused no tolerance. Thus the mechanisms which induce stimulation do not always initiate tolerance. Slow steady increases in the concentration of trichloroethylene could be maintained for several hours without any stimulation of motor activity. At the end of such exposures concentrations were reached which, if applied directly, would have induced considerable stimulation. Thus tolerance may develop without motor stimulation. Inhalation of ethanol also stimulated motor activity initially. During constant exposure the stimulation was followed by a considerable reduction in motor activity. This resulted in a hypoactive period, which in turn was followed by a second increase in motor activity, indicating the existence of not only two but several counteracting mechanisms. Development of metabolites with sedative effects counteracting the stimulating effect of the pure solvents seems to be one explanation for the results.

摘要

吸入几种不同的卤代溶剂会刺激小鼠的运动活动。在长时间暴露期间会产生急性耐受性。耐受性的发展既取决于暴露的时间表,也取决于溶剂。接触三氯乙烯会引起刺激和耐受性,而1,1,1 - 三氯乙烷引起的相同程度的刺激却不会导致耐受性。因此,引起刺激的机制并不总是引发耐受性。三氯乙烯浓度缓慢稳定地增加可以持续几个小时而不会对运动活动产生任何刺激。在这种暴露结束时,达到的浓度如果直接应用,会引起相当大的刺激。因此,耐受性可能在没有运动刺激的情况下发展。吸入乙醇最初也会刺激运动活动。在持续暴露期间,刺激之后是运动活动的显著减少。这导致了一个活动减退期,随后又是运动活动的第二次增加,这表明不仅存在两种而且存在几种相互抵消的机制。产生具有镇静作用的代谢产物来抵消纯溶剂的刺激作用似乎是这些结果的一种解释。

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