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三甲基锡对听觉功能和耳蜗形态的影响。

Trimethyltin effects on auditory function and cochlear morphology.

作者信息

Crofton K M, Dean K F, Ménache M G, Janssen R

机构信息

Neurotoxicology Division, U.S. Environmental Protection Agency, Research Triangle Park, North Carolina 27711.

出版信息

Toxicol Appl Pharmacol. 1990 Aug;105(1):123-32. doi: 10.1016/0041-008x(90)90364-z.

Abstract

Trimethyltin (TMT) is a neurotoxicant known to alter auditory function. The present study was designed to compare TMT-induced auditory dysfunction using behavioral, electrophysiological, and anatomical techniques. Adult male Long-Evans hooded rats (n = 9-12/group) were acutely exposed to saline, 3, 5, or 7 mg/kg TMT. Auditory thresholds were determined 11 weeks postdosing for 5- and 40-kHz tones using reflex modification of the auditory startle response (ASR). Brainstem auditory evoked response (BAER) thresholds were determined for 5-, 40-, and 80-kHz tonal stimuli 9 weeks postdosing. Cochlear histology was assessed at 13 weeks postdosing. Functional endpoints demonstrated a high-frequency hearing loss. ASR thresholds for 40-kHz tones were elevated 25-35 dB in all dosage groups. BAER thresholds for 40- and 80-kHz tones were elevated 30-50 dB in the 5 and 7 mg/kg groups. Organ of Corti surface preparations revealed a pattern of damage suggesting classical ototoxicity. That is, outer hair cells died preferentially in regions associated with high-frequency hearing, in a dosage-dependent manner from base to apex. These data demonstrate the utility of the ASR and BAER in detecting functional alterations in audition and indicate that TMT-induced high-frequency hearing loss is associated with cochlear damage.

摘要

三甲基锡(TMT)是一种已知会改变听觉功能的神经毒物。本研究旨在运用行为学、电生理学和解剖学技术比较TMT诱导的听觉功能障碍。成年雄性Long-Evans带帽大鼠(每组n = 9 - 12只)被急性暴露于生理盐水、3、5或7 mg/kg的TMT中。给药11周后,使用听觉惊吓反应(ASR)的反射修正来测定5 kHz和40 kHz音调的听觉阈值。给药9周后,测定5 kHz、40 kHz和80 kHz音调刺激的脑干听觉诱发电位(BAER)阈值。给药13周后评估耳蜗组织学。功能终点显示存在高频听力损失。所有剂量组中,40 kHz音调的ASR阈值升高了25 - 35 dB。在5 mg/kg和7 mg/kg组中,40 kHz和80 kHz音调的BAER阈值升高了30 - 50 dB。耳蜗 Corti器表面标本显示出一种损伤模式,提示典型的耳毒性。也就是说,外毛细胞优先在与高频听力相关的区域死亡,从基底到顶端呈剂量依赖性。这些数据证明了ASR和BAER在检测听觉功能改变方面的效用,并表明TMT诱导的高频听力损失与耳蜗损伤有关。

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