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首页> 外文期刊>Journal of Neurophysiology >Glycinergic synaptic transmission in the cochlear nucleus of mice with normal hearing and age-related hearing loss
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Glycinergic synaptic transmission in the cochlear nucleus of mice with normal hearing and age-related hearing loss

机译:正常听力和与年龄相关的听力损失的小鼠耳蜗核中的甘草酸突触传递

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The principal inhibitory neu-rotransmitter in the mammalian cochlear nucleus (CN) is glycine. During age-related hearing loss (AHL), glycinergic inhibition becomes weaker in CN. However, it is unclear what aspects of glycinergic transmission are responsible for weaker inhibition with AHL. We examined glycinergic transmission onto bushy cells of the antero-ventral CN in normal-hearing CBA/CaJ mice and in DBA/2J mice, a strain that exhibits an early onset AHL. Glycinergic synaptic transmission was examined in brain slices of mice at 10-15 postnatal days old, 20-35 days old, and at 6-7 mo old. Spontaneous inhibitory postsynaptic current (sIPSC) event frequency and amplitude were the same among all three ages in both strains of mice. However, the amplitudes of IPSCs evoked (elPSC) from stimulating the dorsal CN were smaller, and the failure rate was higher, with increasing age due to decreased quantal content in both mouse strains, independent of hearing status. The coefficient of variation of the elPSC amplitude also increased with age. The decay time constant (t) of sIPSCs and elPSCs were constant in CBA/CaJ mice at all ages, but were significantly slower in DBA/2J mice at postnatal days 20-35, following the onset of AHL, and not at earlier or later ages. Our results suggest that glycinergic inhibition at the synapses onto bushy cells becomes weaker and less reliable with age through changes in release. However, the hearing loss in DBA/2J mice is accompanied by a transiently enhanced inhibition, which could disrupt the balance of excitation and inhibition.
机译:哺乳动物耳蜗核(CN)中主要的抑制性神经递质是甘氨酸。在与年龄有关的听力损失(AHL)期间,CN中的甘氨酸抑制能力减弱。然而,尚不清楚甘氨酸能传递的哪些方面与AHL抑制作用较弱有关。我们检查了在正常听力的CBA / CaJ小鼠和DBA / 2J小鼠中,甘氨酸能传递到前腹CN的丛状细胞上,该菌株表现出较早发作的AHL。在出生后10-15天,20-35天和6-7个月大的小鼠的脑切片中检查了甘草酸的突触传递。在两个小鼠品系的所有三个年龄段中,自发性抑制性突触后电流(sIPSC)事件的频率和幅度均相同。然而,由于两种小鼠品系中数量含量的降低,由刺激背侧CN引起的IPSC刺激(elPSC)的幅度较小,失败率较高,且与年龄增长有关,而与听力状态无关。 elPSC振幅的变化系数也随着年龄的增长而增加。 sIPSCs和elPSCs的衰减时间常数(t)在所有年龄的CBA / CaJ小鼠中都是恒定的,但是在出生后20-35天(AHL发作后),在DBA / 2J小鼠中却显着变慢,而不是早晚发生年龄。我们的结果表明,随着年龄的增长,通过释放的变化,突触对浓密细胞的甘氨酸抑制作用变得更弱,可靠性降低。但是,DBA / 2J小鼠的听力丧失伴随着短暂增强的抑制作用,这可能会破坏激发和抑制作用的平衡。

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