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耳蜗内水杨酸盐可降低低强度声音及耳蜗微音器电位畸变产物。

Intracochlear salicylate reduces low-intensity acoustic and cochlear microphonic distortion products.

作者信息

Kujawa S G, Fallon M, Bobbin R P

机构信息

Department of Speech and Hearing Sciences, University of Arizona, Tucson.

出版信息

Hear Res. 1992 Dec;64(1):73-80. doi: 10.1016/0378-5955(92)90169-n.

Abstract

Salicylate is well-known to produce reversible hearing loss and tinnitus. The site and mechanism of salicylate's ototoxic actions, however, remain unresolved. Recent experiments demonstrating primarily low-intensity effects on cochlear afferent outflow and effects on otoacoustic emissions (OAEs) suggest that salicylate acts to compromise active, energy-enhancing processes within the cochlea (i.e., the active process). We tested this hypothesis by examining the effect of salicylate on distortion product emissions. Distortion product responses to two-tone stimulation were monitored in the guinea pig before, during, and after intracochlear administration of increasing concentrations of salicylate (0.6-5 mM). These responses were recorded as acoustic signals in the ear canal spectrum (ADP), and as present in the cochlear microphonic (CM) recorded from a wire in basal turn scala vestibuli (CMDP). We also recorded the CM response to a single tone. Cochlear perfusion of salicylate resulted in a dose-responsive reduction in ADPs that was greater for low intensities of stimulation. CMDPs also demonstrated a concentration-dependent reduction at low intensities, but were increased slightly, though not significantly, by salicylate when elicited by high intensity primaries. CM was essentially unchanged by intracochlear salicylate. These results are consistent with an action of salicylate that involves the outer hair cells (OHCs) and are in harmony with the hypothesis that salicylate may selectively compromise the active process.

摘要

众所周知,水杨酸盐会导致可逆性听力损失和耳鸣。然而,水杨酸盐耳毒性作用的部位和机制仍未明确。最近的实验主要表明其对耳蜗传入神经传出有低强度影响以及对耳声发射(OAE)有影响,这表明水杨酸盐的作用是损害耳蜗内的主动、能量增强过程(即主动过程)。我们通过研究水杨酸盐对畸变产物发射的影响来验证这一假设。在豚鼠耳蜗内给予浓度递增的水杨酸盐(0.6 - 5 mM)之前、期间和之后,监测其对双音刺激的畸变产物反应。这些反应被记录为耳道频谱中的声信号(ADP),以及从基底转前庭阶的金属丝记录的耳蜗微音电位(CM)中的信号(CMDP)。我们还记录了CM对单音的反应。耳蜗灌注水杨酸盐导致ADP呈剂量依赖性降低,且在低强度刺激时降低幅度更大。CMDP在低强度时也表现出浓度依赖性降低,但在高强度原刺激引发时,水杨酸盐使其略有增加,但不显著。耳蜗内注射水杨酸盐对CM基本无影响。这些结果与水杨酸盐作用于外毛细胞(OHC)的观点一致,并且与水杨酸盐可能选择性损害主动过程的假设相符。

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