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大鼠前腹侧耳蜗核中篮状细胞的神经元兴奋性的发育。

Development of Neuronal Excitability of the Bushy Cells in Anteroventral Cochlear Nucleus of Rats.

机构信息

Life Science and Technology School, Lingnan Normal University, Zhanjiang, China,

Life Science and Technology School, Lingnan Normal University, Zhanjiang, China.

出版信息

Dev Neurosci. 2022;44(6):566-575. doi: 10.1159/000526078. Epub 2022 Jul 21.

Abstract

The ultrafast and precise single-onset action potential (AP) of the bushy cells (BCs) in the anteroventral cochlear nucleus (AVCN) plays an important role in precise processing of temporal auditory information for localizing sound sources and communication cues. The specialized properties of high conductance of the low-voltage-activated potassium (K+LVA) channel contribute to generate ultrafast and precise single-onset APs in BCs. However, the developmental changes of K+LVA distribution and their contributions to shape neuronal excitability of BCs remain unclear. Therefore, we investigated the developmental changes in neuronal excitability of BCs and K+LVA distribution at different developmental periods. Using electrophysiological recording, we first characterized the firing pattern of BCs in response to a sequence of current injections at different developmental periods. The expression of the K+LVA subunit Kv1.1 in AVCN was examined with Western blot. The results indicated that BCs showed single-onset AP firing patterns and paused multiple APs firing patterns at the postnatal time of day 7 (P7) and were then refined into single-onset firing patterns at P14 and P21. With development, the active membrane properties, including latency and half-width of AP, and passive membrane properties, including capacitance, input resistance, and time constant, were significantly decreased. Furthermore, the refinement of firing patterns in BCs was correlated with the upregulation of the Kv1.1 channel in AVCN. In summary, the present study indicated that BCs optimize precise and single-onset firing with development, possibly driven by the changes in membrane properties and upregulation of Kv1.1 in AVCN.

摘要

在前庭耳蜗核 (AVCN) 中的束状细胞 (BC) 的超快和精确的单次动作电位 (AP) 在声源定位和通信线索的精确处理中对时间听觉信息起着重要作用。低电压激活钾 (K+LVA) 通道的高电导的特殊特性有助于在 BC 中产生超快和精确的单次动作电位。然而,K+LVA 分布的发育变化及其对 BC 神经元兴奋性的影响仍不清楚。因此,我们研究了 BC 的神经元兴奋性和不同发育时期 K+LVA 分布的发育变化。通过电生理记录,我们首先在不同发育时期用一系列电流注入来描述 BC 的放电模式。使用 Western blot 检查 AVCN 中 K+LVA 亚基 Kv1.1 的表达。结果表明,BC 在出生后的第 7 天 (P7) 表现出单次动作电位的放电模式和暂停的多个动作电位的放电模式,然后在 P14 和 P21 发育为单次动作电位的放电模式。随着发育的进行,主动膜特性,包括 AP 的潜伏期和半宽度,以及被动膜特性,包括电容、输入电阻和时间常数,显著降低。此外,BC 放电模式的细化与 AVCN 中 Kv1.1 通道的上调有关。总之,本研究表明,BC 可能通过 AVCN 中膜特性的变化和 Kv1.1 的上调来优化精确和单次动作电位的发放。

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