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4-氨基吡啶对豚鼠总和电位的影响。

4-Aminopyridine effects on summating potentials in the guinea pig.

作者信息

van Emst M G, Klis S F, Smoorenburg G F

机构信息

Department of Otorhinolaryngology, Utrecht University, The Netherlands.

出版信息

Hear Res. 1996 Dec 1;102(1-2):70-80. doi: 10.1016/s0378-5955(96)00149-9.

Abstract

DC receptor potentials measured in hair cells, and the associated extracellular DC potential known as the summating potential (SP), originate with nonlinear elements in the mechanoelectric transduction chain. Nonlinear electric conductance has been demonstrated in the basolateral membrane of the hair cell, and is commonly attributed to the presence of voltage- and time-dependent K+ conductances in this part of the hair cell membrane. To study a possible contribution of these K+ channels to the SP we perfused the perilymphatic spaces of the guinea pig cochlea with the K+ channel blocker 4-aminopyridine (4-AP). Since 4-AP might also affect the afferent fibers and, thus, interfere with SP measurement, we added tetrodotoxin (TTX) to the perfusion solutions to block the neuronal discharges. Sound-evoked (2-12 kHz) intracochlear potentials were recorded from the basal turn of both scala vestibuli and scala tympani. The results showed a frequency- and level-dependent effect of 4-AP on the magnitude of the SP. At low and moderate levels of 8 and 12 kHz stimuli 4-AP mostly reduced the SP amplitude, while at high levels of these stimuli and at all levels of 2 and 4 kHz stimuli 4-AP enlarged the SP amplitude. These effects were reversible and occurred in both scala vestibuli and scala tympani. We attribute these bi-directional effects on the SP amplitude to a differential effect of 4-AP on inner hair cell (IHC) and outer hair cell (OHC) physiology. The decrease in SP was found for stimulus conditions where the SP presumably depends mainly on contributions from basal turn IHCs. Blocking the 4-AP-sensitive K+ channel in the IHC membrane should lead to a reduced contribution from the IHCs to the SP, because of an increase in basolateral membrane resistance. The increase in SP was found for stimulus conditions where the SP is assumed to depend mainly on contributions from basal turn OHCs. In this case the OHCs seemed to respond to blocking of the 4-AP-sensitive K+ channel in the basolateral membrane with an increased contribution to the nonlinearity of the transduction chain. Administration of 4-AP did not affect the endocochlear potential. Light microscopic examination revealed no apparent changes in morphology after 4-AP perfusion.

摘要

在毛细胞中测量到的直流受体电位,以及与之相关的被称为总和电位(SP)的细胞外直流电位,起源于机械电转导链中的非线性元件。在毛细胞的基底外侧膜中已证实存在非线性电导,这通常归因于毛细胞膜这一部分存在电压和时间依赖性钾电导。为了研究这些钾通道对总和电位的可能贡献,我们用钾通道阻滞剂4-氨基吡啶(4-AP)灌注豚鼠耳蜗的外淋巴间隙。由于4-AP也可能影响传入纤维,从而干扰总和电位的测量,我们在灌注溶液中加入河豚毒素(TTX)以阻断神经元放电。从前庭阶和鼓阶的基底转记录声音诱发(2-12千赫)的耳蜗内电位。结果表明,4-AP对总和电位的幅度有频率和强度依赖性影响。在8千赫和12千赫刺激的低强度和中等强度水平下,4-AP大多降低了总和电位的幅度,而在这些刺激的高强度水平以及2千赫和4千赫刺激的所有强度水平下,4-AP增大了总和电位的幅度。这些效应是可逆的,并且在前庭阶和鼓阶中均出现。我们将这些对总和电位幅度的双向效应归因于4-AP对内毛细胞(IHC)和外毛细胞(OHC)生理学的差异效应。在总和电位可能主要依赖于基底转内毛细胞贡献的刺激条件下,发现总和电位降低。阻断内毛细胞膜中对4-AP敏感的钾通道应会导致内毛细胞对总和电位的贡献减少,因为基底外侧膜电阻增加。在总和电位被认为主要依赖于基底转外毛细胞贡献的刺激条件下,发现总和电位增加。在这种情况下,外毛细胞似乎通过增加对转导链非线性的贡献来响应基底外侧膜中对4-AP敏感的钾通道的阻断。给予4-AP不影响内淋巴电位。光学显微镜检查显示4-AP灌注后形态无明显变化。

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