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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Salicylate induces tinnitus through activation of cochlear NMDA receptors.
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Salicylate induces tinnitus through activation of cochlear NMDA receptors.

机译:水杨酸酯通过激活耳蜗NMDA受体诱导耳鸣。

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摘要

Salicylate, the active component of aspirin, is known to induce tinnitus. However, the site and the mechanism of generation of tinnitus induced by salicylate remains unclear. Here, we developed a behavioral procedure to measure tinnitus in rats. The behavioral model was based on an active avoidance paradigm in which rats had to display a motor task (i.e., to jump on a climbing pole when hearing a sound). Giving salicylate led to a decrease in the percentage of correct responses (score) and a drastic increase in the number of false positive responses (i.e., animals execute the motor task during a silent period). Presentation of the sound at a constant perceptive level prevents decrease of the score, leading to the proposal that score is related to hearing performance. In contrast, the increase of false positive responses remained unchanged. In fact, animals behaved as if they hear a sound, indicating that they are experiencing tinnitus. Mefenamate in place of salicylate also increased the number of false positive responses, suggesting that salicylate-induced tinnitus is related to an inhibition of cyclooxygenase. One physiological basis of salicylate ototoxicity is likely to originate from altered arachidonic acid metabolism. Because arachidonic acid potentiates NMDA receptor currents, we tested the involvement of cochlear NMDA receptors in the occurrence of tinnitus. Application of NMDA antagonists into the perilymphatic fluids of the cochlea blocked the increase in pole-jumping behavior induced by salicylate, suggesting that salicylate induces tinnitus through activation of cochlear NMDA receptors.
机译:水杨酸酯是阿司匹林的活性成分,可诱发耳鸣。然而,由水杨酸酯诱导的耳鸣的部位和产生机制仍不清楚。在这里,我们开发了一种行为程序来测量大鼠耳鸣。行为模型基于主动回避范例,其中老鼠必须表现出运动任务(即听到声音时跳上爬杆)。给予水杨酸盐导致正确反应的百分比(得分)降低,并且假阳性反应的数量急剧增加(即,动物在沉默期执行运动任务)。以恒定的感知水平呈现声音可以防止分数降低,从而导致建议分数与听力表现有关。相反,假阳性反应的增加保持不变。实际上,动物的行为就像他们听到声音一样,表明它们正在经历耳鸣。甲芬那酸酯代替水杨酸酯也增加了假阳性反应的数量,表明水杨酸酯诱导的耳鸣与环氧合酶的抑制有关。水杨酸盐耳毒性的一种生理基础很可能源于花生四烯酸代谢的改变。因为花生四烯酸增强了NMDA受体电流,所以我们测试了耳蜗NMDA受体在耳鸣发生中的作用。 NMDA拮抗剂在耳蜗的淋巴液中的应用阻止了由水杨酸盐引起的跳极行为的增加,表明水杨酸盐通过耳蜗NMDA受体的激活诱导耳鸣。

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