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首页> 外文期刊>Frontiers in Aging Neuroscience >Salicylate-Induced Suppression of Electrically Driven Activity in Brain Slices from the Auditory Cortex of Aging Mice
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Salicylate-Induced Suppression of Electrically Driven Activity in Brain Slices from the Auditory Cortex of Aging Mice

机译:水杨酸诱导的衰老小鼠听觉皮层脑切片中的电驱动活动的抑制。

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The prevalence of tinnitus is known to increase with age. The age-dependent mechanisms of tinnitus may have important implications for the development of new therapeutic treatments. High doses of salicylate can be used experimentally to induce transient tinnitus and hearing loss. Although accumulating evidence indicates that salicylate induces tinnitus by directly targeting neurons in the peripheral and central auditory systems, the precise effect of salicylate on neural networks in the auditory cortex (AC) is unknown. Here, we examined salicylate-induced changes in stimulus-driven laminar responses of AC slices with salicylate superfusion in young and aged senescence-accelerated-prone (SAMP) and -resistant (SAMR) mice. Of the two strains, SAMP1 is known to be a more suitable model of presbycusis. We recorded stimulus-driven laminar local field potential (LFP) responses at multi sites in AC slice preparations. We found that for all AC slices in the two strains, salicylate always reduced stimulus-driven LFP responses in all layers. However, for the amplitudes of the LFP responses, the two senescence-accelerated mice (SAM) strains showed different laminar properties between the pre- and post-salicylate conditions, reflecting strain-related differences in local circuits. As for the relationships between auditory brainstem response (ABR) thresholds and the LFP amplitude ratios in the pre- vs. post-salicylate condition, we found negative correlations in layers 2/3 and 4 for both older strains, and in layer 5 (L5) in older SAMR1. In contrast, the GABAergic agonist muscimol (MSC) led to positive correlations between ABR thresholds and LFP amplitude ratios in the pre- vs. post-MSC condition in younger SAM mice from both strains. Further, in younger mice, salicylate decreased the firing rate in AC L4 pyramidal neurons. Thus, salicylate can directly reduce neural excitability of L4 pyramidal neurons and thereby influence AC neural circuit activity. That we observed age-dependent effects of salicylate and varied GABAergic sensitivity in the AC among mouse strains with hearing loss implies that potential therapeutic mechanisms for tinnitus may operate differently in young vs. aged subjects. Therefore, scientists developing new therapeutic modalities for tinnitus treatment should consider using both aged and young animals.
机译:耳鸣的患病率随着年龄的增长而增加。耳鸣的年龄依赖性机制可能对开发新的治疗方法具有重要意义。高剂量的水杨酸酯可用于实验性诱发短暂性耳鸣和听力损失。尽管越来越多的证据表明水杨酸盐通过直接靶向周围和中枢听觉系统中的神经元来诱发耳鸣,但水杨酸盐对听觉皮层(AC)中神经网络的精确作用尚不清楚。在这里,我们研究了水杨酸盐诱导的AC切片的刺激驱动层流反应中水杨酸盐诱导的变化,这些切片具有水杨酸盐倾向的年轻和老年易衰老(SAMP)和耐药(SAMR)小鼠。在这两个菌株中,已知SAMP1是更合适的老花眼模型。我们记录了AC切片制备中多个位置的刺激驱动的层流局部场电位(LFP)反应。我们发现,对于两个菌株中的所有AC切片,水杨酸酯始终会降低所有层中刺激驱动的LFP反应。但是,对于LFP反应的幅度,两个衰老加速小鼠(SAM)品系在水杨酸化前后的条件下显示出不同的层流特性,反映了局部回路中与应变相关的差异。至于在水杨酸之前和之后的听觉脑干反应(ABR)阈值与LFP振幅比之间的关系,我们发现两种老菌株在第2/3和4层以及第5层均存在负相关(L5 )在较旧的SAMR1中。相比之下,在这两种品系的年轻SAM小鼠中,MSC之前和之后,GABA能激动剂麝香酚(MSC)导致ABR阈值与LFP振幅比之间呈正相关。此外,在年轻的小鼠中,水杨酸盐降低了AC L4锥体神经元的放电速度。因此,水杨酸酯可直接降低L4锥体神经元的神经兴奋性,从而影响AC神经回路活动。我们观察到水杨酸的年龄依赖性效应和患有听力损失的小鼠品系中AC中GABA的各种敏感性变化,这暗示着耳鸣的潜在治疗机制在年轻与老年受试者中的作用可能不同。因此,开发新的耳鸣治疗方法的科学家应该考虑同时使用年老和年幼的动物。

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