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Time-dependent activity of primary auditory neurons in the presence of neurotrophins and antibiotics

机译:在神经营养蛋白和抗生素存在下的主要听觉神经元的时间依赖性活动

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In vitro cultures provide a valuable tool in studies examining the survival, morphology and function of cells in the auditory system. Primary cultures of primary auditory neurons have most notably provided critical insights into the role of neurotrophins in cell survival and morphology. Functional studies have also utilized in vitro models to study neuronal physiology and the ion channels that dictate these patterns of activity. Here we examine what influence time-in-culture has on the activity of primary auditory neurons, and how this affects our interpretation of neurotrophin and antibiotic-mediated effects in this population. Using dissociated cell culture we analyzed whole-cell patch-clamp recordings of spiral ganglion neurons grown in the presence or absence of neurotrophins and/or penicillin and streptomycin for 1-3 days in vitro. Firing threshold decreased, and both action potential number and latency increased over time regardless of treatment, whilst input resistance was lowest where neurotrophins were present. Differences in firing properties were seen with neurotrophin concentration but were not consistently maintained over the 3 days in vitro. The exclusion of antibiotics from culture media influenced most firing properties at 1 day in vitro in both untreated and neurotrophin-treated conditions. The only difference still present at 3 days was an increase in input resistance in neurotrophin-treated neurons. These results highlight the potential of neurotrophins and antibiotics to influence neural firing patterns in vitro in a time-dependent manner, and advise the careful consideration of their impact on SGN function in future studies. (C) 2017 Elsevier B.V. All rights reserved.
机译:体外培养物提供了研究在检测听觉系统中细胞的存活率,形态和功能的研究中的有价值的工具。主要听觉神经元的主要培养物最大地为神经营养素在细胞存活和形态中的作用提供了关键的见解。功能性研究还利用了体外模型来研究神经元生理学和决定这些活动模式的离子通道。在这里,我们研究了在文化上对主要听觉神经元的活动的影响,以及这会如何影响我们对该人群中的神经营养蛋白和抗生素介导的影响的解释。通过解离细胞培养,我们分析了在体外存在或不存在神经营养蛋白和/或青霉素和链霉素的存在或不存在的螺旋神经节神经元的全细胞贴片夹具1-3天。烧制阈值下降,并且不管治疗如何随时间增加动作势数和延迟,而输入抗性最低,则存在神经营养素。用神经营养素浓度观察烧制性质的差异,但在体外3天并未始终保持。排除培养介质的抗生素在未处理和神经营养蛋白处理的条件下在体外1天受到最多的烧制性质。在3天左侧仍存在的唯一差异是神经滋生素治疗的神经元的输入抗性增加。这些结果突出了神经营养蛋白和抗生素的潜力以时间依赖的方式影响神经烧制模式,并建议仔细考虑他们在未来研究中对SGN功能的影响。 (c)2017 Elsevier B.v.保留所有权利。

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