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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Lack of brain-derived neurotrophic factor hampers inner hair cell synapse physiology, but protects against noise-induced hearing loss
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Lack of brain-derived neurotrophic factor hampers inner hair cell synapse physiology, but protects against noise-induced hearing loss

机译:缺乏脑源性神经营养因子会阻碍内部毛细胞突触生理,但可防止噪声引起的听力损失

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The precision of sound information transmitted to the brain depends on the transfer characteristics of the inner hair cell (IHC) ribbon synapse and its multiple contacting auditory fibers. We found that brain derived neurotrophic factor (BDNF) differentially influences IHC characteristics in the intact and injured cochlea. Using conditional knock-out mice (BDNF Pax2 KO) we found that resting membrane potentials, membrane capacitance and resting linear leak conductance of adult BDNF Pax2 KO IHCs showed a normal maturation. Likewise, in BDNF Pax2 KO membrane capacitance (ΔC m) as a function of inward calcium current (I Ca) follows the linear relationship typical for normal adult IHCs. In contrast the maximal ΔC m, but not the maximal size of the calcium current, was significantly reduced by 45% in basal but not in apical cochlear turns in BDNF Pax2 KOIHCs. Maximal ΔC m correlated with a loss of IHC ribbons in these cochlear turns and a reduced activity of the auditory nerve (auditory brainstem response wave I). Remarkably, a noise-induced loss of IHC ribbons, followed by reduced activity of the auditory nerve and reduced centrally generated wave II and III observed in control mice, was prevented in equally noise-exposed BDNF Pax2 KO mice. Data suggest that BDNF expressed in the cochlea is essential for maintenance of adult IHC transmitter release sites and that BDNF upholds opposing afferents in high-frequency turns and scales them down following noise exposure.
机译:传递到大脑的声音信息的精确度取决于内部毛细胞(IHC)带状突触及其多个接触听觉纤维的传递特性。我们发现,脑源性神经营养因子(BDNF)在完整和受损的耳蜗中差异地影响IHC特征。使用条件基因敲除小鼠(BDNF Pax2 KO),我们发现成年BDNF Pax2 KO IHC的静息膜电位,膜电容和静息线性渗漏电导率显示正常成熟。同样,在BDNF中,Pax2 KO膜电容(ΔCm)作为内向钙电流(I Ca)的函数遵循正常成人IHC的典型线性关系。相比之下,BDNF Pax2 KOIHCs的最大ΔCm而不是最大的钙电流大小显着降低了基础的45%,但未在尖顶耳蜗中降低。最大ΔCm与这些耳蜗转弯中IHC条带的丢失和听神经的活动减少(听性脑干反应波I)相关。值得注意的是,在同等噪声暴露的BDNF Pax2 KO小鼠中,可以防止噪声引起的IHC条带丢失,随后听觉神经活动减少以及在对照小鼠中观察到的中央产生的波II和III减少。数据表明,在耳蜗中表达的BDNF对于维持成年IHC递质释放位点至关重要,并且BDNF可以在高频转弯中维持对立的传入传入体,并在受到噪声影响后将其缩小。

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