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2-硫代三嗪对大鼠的急性毒性

Acute toxicity of 2-thiotriazone in rats.

作者信息

Tate T M, Henk W, Flory W

机构信息

Department of Veterinary Physiology, Pharmacology, and Toxicology, Louisiana State University, Baton Rouge 70803.

出版信息

Arch Environ Contam Toxicol. 1991 Apr;20(3):380-4. doi: 10.1007/BF01064407.

Abstract

The acute toxicity of 2-thiotriazone (TTZ) was evaluated in adult and immature rats of both sexes. 2-Thiotriazone produced marked pulmonary toxicity in rats that was both age and sex dependent. TTZ was highly toxic to adult male rats when given as a single dose (oral LD50 = 4.6 mg/kg and ip LD50 = 1.4 mg/kg) with 100% mortality being observed at 10 mg/kg orally and 5 mg/kg intraperitoneally (ip). Female rats were more resistant than males with only 40% mortality at concentrations of 10-100 mg/kg orally. Immature rats (30-40 days of age) of both sexes showed no response when TTZ was administered at concentrations of 10-1000 mg/kg either orally or ip. Gross and histological examination of lung tissue from rats affected by TTZ revealed severe pulmonary edema, effusion, and mottling of the lungs. Significant increases in lung weights were also observed. Studies with diethylmaleate (DEM) and TTZ indicated that DEM pretreatment potentiated the toxic effects of TTZ in adult male, adult female, and immature rats. Lung weights in DEM/TTZ-treated rats were twice that of animals treated with TTZ alone. The results of the present study indicate that TTZ is highly toxic to male rats with the lungs being particularly vulnerable to its effects and that TTZ toxicity is enhanced by DEM pretreatment.

摘要

评估了2-硫代三嗪(TTZ)对成年和未成年大鼠两性的急性毒性。2-硫代三嗪在大鼠中产生明显的肺毒性,且这种毒性具有年龄和性别依赖性。当单次给药时,TTZ对成年雄性大鼠剧毒(经口LD50 = 4.6 mg/kg,腹腔注射LD50 = 1.4 mg/kg),经口给予10 mg/kg和腹腔注射5 mg/kg时观察到100%死亡率。雌性大鼠比雄性大鼠更具抗性,经口给予10 - 100 mg/kg浓度时只有40%死亡率。两性的未成年大鼠(30 - 40日龄)经口或腹腔注射给予10 - 1000 mg/kg浓度的TTZ时均无反应。对受TTZ影响的大鼠肺组织进行大体和组织学检查发现严重肺水肿、积液和肺部斑点。还观察到肺重量显著增加。用马来酸二乙酯(DEM)和TTZ进行的研究表明,DEM预处理增强了TTZ对成年雄性、成年雌性和未成年大鼠的毒性作用。经DEM/TTZ处理的大鼠肺重量是仅用TTZ处理动物的两倍。本研究结果表明,TTZ对雄性大鼠剧毒,肺对其影响尤为敏感,且DEM预处理会增强TTZ毒性。

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