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Specific immediate early gene expression induced by high doses of salicylate in the cochlear nucleus and inferior colliculus of the rat a??

机译:高剂量水杨酸酯在大鼠耳蜗核和下丘脑中诱导的特定的即刻早期基因表达

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Introduction: Salicylate at high doses induces tinnitus in humans and experimental animals. However, the mechanisms and loci of action of salicylate in inducing tinnitus are still not well known. The expression of Immediate Early Genes (IEG) is traditionally associated with long-term neuronal modifications but it is still not clear how and where IEGs are activated in animal models of tinnitus. Objectives: Here we investigated the expression of c-fos and Egr-1, two IEGs, in the Dorsal Cochlear Nucleus (DCN), the Inferior Colliculus (IC), and the Posterior Ventral Cochlear Nucleus (pVCN) of rats. Methods: Rats were treated with doses known to induce tinnitus in rats (300 mg/kg i.p. daily, for 3 days), and c-fos and Egr-1 protein expressions were analyzed using western blot and immunocytochemistry. Results: After administration of salicylate, c-fos protein expression increased significantly in the DCN, pVCN and IC when assayed by western blot. Immunohistochemistry staining showed a more intense labeling of c-fos in the DCN, pVCN and IC and a significant increase in c-fos positive nuclei in the pVCN and IC. We did not detect increased Egr-1 expression in any of these areas. Conclusion: Our data show that a high dose of salicylate activates neurons in the DCN, pVCN and IC. The expression of these genes by high doses of salicylate strongly suggests that plastic changes in these areas are involved in the genesis of tinnitus.
机译:简介:高剂量的水杨酸酯会在人类和实验动物中诱发耳鸣。然而,水杨酸酯诱导耳鸣的作用机理和基因座仍不为人所知。传统上,即刻早期基因(IEG)的表达与长期的神经元修饰有关,但目前尚不清楚在耳鸣动物模型中如何激活IEG和在何处激活IEG。目的:在这里,我们研究了两个IEGs c-fos和Egr-1在大鼠背侧耳蜗核(DCN),下腔囊(IC)和后腹侧耳蜗核(pVCN)中的表达。方法:用已知能诱发大鼠耳鸣的剂量(每天300 mg / kg腹腔注射,连续3天)治疗大鼠,并使用Western blot和免疫细胞化学分析c-fos和Egr-1蛋白的表达。结果:水杨酸酯给药后,通过蛋白质印迹法检测时,DCN,pVCN和IC中c-fos蛋白表达显着增加。免疫组织化学染色显示DCN,pVCN和IC中c-fos的标记更强烈,而pVCN和IC中c-fos阳性核的显着增加。我们在这些区域均未检测到Egr-1表达增加。结论:我们的数据表明,高剂量的水杨酸酯可激活DCN,pVCN和IC中的神经元。高剂量的水杨酸盐表达这些基因强烈表明这些区域的塑性变化与耳鸣的发生有关。

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