Ruel Jérôme, Chabbert Christian, Nouvian Régis, Bendris Rim, Eybalin Michel, Leger Claude Louis, Bourien Jérôme, Mersel Marcel, Puel Jean-Luc
Inserm, Unité Mixte de Recherche 583, F-34091 Montpellier, France.
J Neurosci. 2008 Jul 16;28(29):7313-23. doi: 10.1523/JNEUROSCI.5335-07.2008.
Currently, many millions of people treated for various ailments receive high doses of salicylate. Consequently, understanding the mechanisms by which salicylate induces tinnitus is an important issue for the research community. Behavioral testing in rats have shown that tinnitus induced by salicylate or mefenamate (both cyclooxygenase blockers) are mediated by cochlear NMDA receptors. Here we report that the synapses between the sensory inner hair cells and the dendrites of the cochlear spiral ganglion neurons express NMDA receptors. Patch-clamp recordings and two-photon calcium imaging demonstrated that salicylate and arachidonate (a substrate of cyclooxygenase) enabled the calcium flux and the neural excitatory effects of NMDA on cochlear spiral ganglion neurons. Salicylate also increased the arachidonate content of the whole cochlea in vivo. Single-unit recordings of auditory nerve fibers in adult guinea pig confirmed the neural excitatory effect of salicylate and the blockade of this effect by NMDA antagonist. These results suggest that salicylate inhibits cochlear cyclooxygenase, which increased levels of arachidonate. The increased levels of arachidonate then act on NMDA receptors to enable NMDA responses to glutamate that inner hair cells spontaneously release. This new pharmacological profile of salicylate provides a molecular mechanism for the generation of tinnitus at the periphery of the auditory system.
目前,数百万因各种疾病接受治疗的人会服用高剂量的水杨酸盐。因此,了解水杨酸盐诱发耳鸣的机制是研究界的一个重要问题。对大鼠进行的行为测试表明,水杨酸盐或甲灭酸(两者均为环氧化酶阻滞剂)诱发的耳鸣是由耳蜗N-甲基-D-天冬氨酸(NMDA)受体介导的。在此我们报告,感觉性内毛细胞与耳蜗螺旋神经节神经元的树突之间的突触表达NMDA受体。膜片钳记录和双光子钙成像表明,水杨酸盐和花生四烯酸(环氧化酶的一种底物)可使钙通量以及NMDA对耳蜗螺旋神经节神经元产生神经兴奋作用。水杨酸盐还增加了体内整个耳蜗的花生四烯酸含量。对成年豚鼠听神经纤维的单单位记录证实了水杨酸盐的神经兴奋作用以及NMDA拮抗剂对该作用的阻断。这些结果表明,水杨酸盐抑制耳蜗环氧化酶,从而增加花生四烯酸水平。然后,升高的花生四烯酸水平作用于NMDA受体,使NMDA对内侧毛细胞自发释放的谷氨酸产生反应。水杨酸盐的这种新的药理学特性为听觉系统外周耳鸣的产生提供了分子机制。