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四氢呋喃的毒理学、环境危害和风险评估综述。

A review of the toxicological and environmental hazards and risks of tetrahydrofuran.

机构信息

Tox-Logic Consulting , Petaluma, CA , USA .

出版信息

Crit Rev Toxicol. 2013 Nov;43(10):811-28. doi: 10.3109/10408444.2013.836155. Epub 2013 Oct 22.

DOI:10.3109/10408444.2013.836155
PMID:24148014
Abstract

We present in this paper a review of the toxicological and environmental hazards, exposures and risks of tetrahydrofuran (THF; CASRN 109-99-9). THF is a polar solvent and monomer that is easily absorbed by all routes of exposure. The acute toxicity of THF is low to moderate by all routes. Irreversible corrosive damage to the eye can result from direct contact. However, THF is neither a skin irritant, nor sensitizer. Studies in vitro and in vivo have shown that THF is not mutagenic. Chronic studies have found benign tumors in the kidneys of male rats and in the livers of female mice. These findings have been examined, and although a mode of action is not known, the weight of evidence suggests that these tumors are likely not relevant to human health, but instead secondary to rodent-specific modes of action. THF produces transient sedative effects in rats at high concentrations but no significant neurobehavioral changes or neuropathology in sub-chronic studies. There were no specific effects reported on reproduction or developmental toxicity in rats or mice, with non-specific developmental toxicity observed only in the presence of significant maternal toxicity. The log K(ow) value for THF is less than 3, indicating a low potential for bioaccumulation. THF is inherently biodegradable, thus is not expected to be environmentally persistent. THF does not present an ecotoxicity hazard based on test results in fish, aquatic invertebrates and plants. Exposures to THF in the workplace, to consumers and via environmental releases were modeled and all found to fall below the derived toxicity thresholds.

摘要

本文综述了四氢呋喃(THF;CASRN 109-99-9)的毒理学和环境危害、暴露和风险。THF 是一种极性溶剂和单体,很容易通过所有暴露途径被吸收。THF 通过所有途径的急性毒性为低到中等。直接接触会导致眼睛不可逆转的腐蚀性损伤。然而,THF 既不是皮肤刺激性物质,也不是致敏物。体外和体内研究表明,THF 没有致突变性。慢性研究发现雄性大鼠的肾脏和雌性小鼠的肝脏中有良性肿瘤。这些发现已经过检查,虽然不知道作用模式,但大量证据表明,这些肿瘤可能与人类健康无关,而是与啮齿动物特有的作用模式有关。THF 在高浓度下会使大鼠产生短暂的镇静作用,但在亚慢性研究中没有发现神经行为改变或神经病理学变化。在大鼠或小鼠中,没有报告对生殖或发育毒性有特定影响,只有在母体毒性显著存在的情况下才观察到非特异性发育毒性。THF 的 log K(ow) 值小于 3,表明其生物蓄积潜力较低。THF 具有内在的可生物降解性,因此预计不会在环境中持久存在。根据鱼类、水生无脊椎动物和植物的测试结果,THF 不会造成生态毒性危害。在工作场所、消费者和环境释放中接触 THF 的情况进行了建模,所有这些都发现低于推导的毒性阈值。

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