甲苯皮下给药所致耳毒性。

G T Pryor, R A Howd
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引用次数: 0

摘要

吸入暴露于甲苯的大鼠会导致不可逆的听力损失(例如,Pryor等)。为了确定吸入系统发出的噪音是否是主要影响因素,以及通过非吸入途径暴露是否会造成类似的影响,断奶的雄性fisher -344大鼠在安静的环境中每天注射两次SC,并注射PEG-300(对照组)或1.5或1.7 g/kg甲苯,持续7天。在被训练完成多感觉条件回避反应(CAR)任务后,在4、8、12和20 kHz产生音调强度反应函数,并估计行为听觉反应阈值。甲苯在8千赫及以上的频率下引起剂量相关的听力损失,对CAR对光、非厌性足震或4千赫音调的反应性能没有影响。这种影响与吸入接触后观察到的相似表明,噪音不是甲苯引起的听力损失的主要因素,尽管噪音和甲苯之间可能的相互作用仍有待研究。这些结果还表明,甲苯蒸气通过外耳结构的直接渗透,如吸入暴露时可能发生的那样,并不是诱发听力损失的必要条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Toluene-induced ototoxicity by subcutaneous administration.

Inhalation exposure of rats to toluene causes irreversible hearing loss (e.g., Pryor et al.). To determine whether noise emanating from the inhalation system was a major contributing factor and whether exposure by a noninhalation route would cause a similar effect, weanling, male Fischer-344 rats were injected SC twice daily in a quiet environment with PEG-300 (control) or with 1.5 or 1.7 g/kg of toluene for 7 days. After being trained to perform a multisensory conditioned avoidance response (CAR) task, tone intensity-response functions were generated at 4, 8, 12, and 20 kHz, and behavioral auditory response thresholds were estimated. Toluene caused a dose-related hearing loss at frequencies of 8 kHz and above, with no effect on performance of the CAR in response to light, nonaversive footshock, or the 4-kHz tone. The similarity of this effect to that observed following inhalation exposure indicates that noise is not a major factor in the toluene-induced hearing loss, although possible interactions between noise and toluene remain to be investigated. These results also demonstrate that direct penetration of the toluene vapors through the external ear structure, as might occur during inhalation exposure, is not a necessary condition for inducing the hearing loss.

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