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doi:10.1016/0041-008X(90)90364-Z    
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Copyright © 1990 Published by Elsevier Inc.

Trimethyltin effects on auditory function and cochlear morphology*1

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K. M. Crofton*, K. F. Dean*, M. G. Ménache and R. Janssen*

* Neurotoxicology Division, MD-74B, Health Effects Research Laboratory, U.S. Environmental Protection Agency, Research Triangle Park, North Carolina 27711, USA

NSI Technology Services, Inc., Research Triangle Park, North Carolina 27709, USA


Received 16 November 1989; 
accepted 12 May 1990. 
Available online 27 September 2004.

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.

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*1 Portions of these data were presented at the 1989 Annual Meeting of the Society of Toxicology, Atlanta, GA. This manuscript has been reviewed by the Health Effects Research Laboratory, U.S. Environmental Protection Agency, and approved for publication. Mention of trade names or commercial products does not constitute endorsement or recommendation for use.


 
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