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Increasing GABA reverses age-related alterations in excitatory receptive fields and intensity coding of auditory midbrain neurons in aged mice

机译:GABA的增加会逆转衰老小鼠兴奋性感受野的年龄相关变化和听觉中脑神经元的强度编码

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摘要

A key feature of age-related hearing loss is a reduction in the expression of inhibitory neurotransmitters in the central auditory system. This loss is partially responsible for changes in central auditory processing, as inhibitory receptive fields play a critical role in shaping neural responses to sound stimuli. Vigabatrin (VGB), an antiepileptic agent that irreversibly inhibits γ-amino butyric acid (GABA) transaminase, leads to increased availability of GABA throughout the brain. This study used multi-channel electrophysiology measurements to assess the excitatory frequency response areas in old CBA mice to which VGB had been administered. We found a significant post-VGB reduction in the proportion of V-type shapes, and an increase in primary-like excitatory frequency response areas. There was also a significant increase in the mean maximum driven spike rates across the tonotopic frequency range of all treated animals, consistent with observations that GABA buildup within the central auditory system increases spike counts of neural receptive fields. This increased spiking is also seen in the rate-level functions and seems to explain the improved low-frequency thresholds.
机译:与年龄有关的听力损失的关键特征是中枢听觉系统中抑制性神经递质的表达减少。这种损失部分负责中央听觉处理的变化,因为抑制性感受野在塑造对声音刺激的神经反应中起关键作用。 Vigabatrin(VGB)是一种抗癫痫药,它不可逆地抑制γ-氨基丁酸(GABA)转氨酶,导致整个大脑中GABA的利用率增加。这项研究使用多通道电生理学测量来评估已向VGB给药的老CBA小鼠的兴奋性频率响应区域。我们发现VGB后的V型形状比例显着减少,并且初级刺激频率响应面积增加。在所有接受治疗的动物的局部活动频率范围内,平均最大驱动峰值频率也显着增加,这与以下观察结果一致:中央听觉系统内GABA的积累会增加神经感受野的峰值计数。在速率级别的函数中也可以看到这种尖峰的增加,并且似乎可以解释低频阈值的改善。

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