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二硫化碳和甲苯的行为毒理学

Behavioral toxicology of carbon disulfide and toluene.

作者信息

Weiss B, Wood R W, Macys D A

出版信息

Environ Health Perspect. 1979 Jun;30:39-45. doi: 10.1289/ehp.793039.

Abstract

Organic solvents are pervasive in the communal and industrial environments. Although many are potent central nervous system agents, clearly delineated behavioral effects have played only a minor role in the formation of exposure standards. A comprehensive behavioral pharmacology and toxicology of these compounds is one aim of US/USSR collaboration. The current report describes some actions of carbon disulfide and toulene. Earlier data about the actions of carbon disulfide on pigeon operant performance indicated disruption of schedule-controlled key-pecking. Primate data are now described from a situation designed to determine aversive thresholds to electrical stimulation. Effective concentrations of carbon disulfide produced both a rise in the amount of electric shock tolerated and a diminution of the response force exerted by the monkeys. In experiments with toluene, pigeons were shown to elevate key-pecking rate in an operant situation at certain concentrations. Toluene also was studied for its capacity to maintain self-administration in the same way as drugs of abuse. Monkeys worked to gain access to toulene vapor just as they work for opiates or amphetamines. The current experiments demonstrate how comprehensive the range of behavioral toxicology needs to be to deal with environmental health issues.

摘要

有机溶剂在公共和工业环境中普遍存在。尽管许多有机溶剂是强效的中枢神经系统制剂,但明确界定的行为效应在接触标准的形成中仅起了次要作用。对这些化合物进行全面的行为药理学和毒理学研究是美/苏合作的目标之一。本报告描述了二硫化碳和甲苯的一些作用。早期关于二硫化碳对鸽子操作行为影响的数据表明,它会干扰按计划控制的啄键行为。现在描述的灵长类动物实验数据来自一个旨在确定对电刺激的厌恶阈值的实验。二硫化碳的有效浓度既使猴子耐受电击的量增加,又使它们施加的反应力减小。在甲苯实验中,研究表明鸽子在特定浓度的操作情境中会提高啄键速率。还研究了甲苯维持自我给药的能力,其方式与滥用药物相同。猴子会努力获取甲苯蒸气,就像它们会为获取鸦片或安非他命而努力一样。当前的实验表明,行为毒理学的范围需要多么全面才能应对环境卫生问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/332d/1637709/4af0ea5d4113/envhper00475-0046-a.jpg

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