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尼莫地平,一种L型钙通道拮抗剂,可逆转从豚鼠耳蜗记录到的负和电位。

Nimodipine, an L-channel Ca2+ antagonist, reverses the negative summating potential recorded from the guinea pig cochlea.

作者信息

Bobbin R P, Jastreboff P J, Fallon M, Littman T

机构信息

Louisiana State University Medical School, Kresge Hearing Research Laboratory of the South, New Orleans 70112.

出版信息

Hear Res. 1990 Jul;46(3):277-87. doi: 10.1016/0378-5955(90)90009-e.

Abstract

Nimodipine, an L-type Ca2+ channel antagonist, was tested using sound-evoked cochlear potentials in guinea pigs to investigate whether these channels are involved in cochlear function. Perilymph spaces of guinea pig cochleae were perfused with artificial perilymph solutions containing 0.1-10 microM nimodipine at a rate of 2.5 microliters/min for 10 min. The cochlear potentials evoked by 10 kHz tone bursts of varying intensities were recorded from the basal turn of the scala vestibuli. Cochlear perfusion of nimodipine resulted in reversible, dose-related suppression of the compound action potential of the auditory nerve (CAP; N1-P1), a prolongation of N1 latency at suprathreshold levels, an elevated CAP threshold, a decrease in N1 latency at a constant amplitude measured at CAP threshold, a reduction in cochlear microphonics (CM), and a reduction of the negative summating potential (SP) to a point where it became positive (i.e., a reversal of SP). The endocochlear potential (EP) was not affected. These results support the hypothesis that L-type Ca2+ channels are directly involved in the operation of the organ of Corti. We speculate that L-type Ca2+ channels are integrally involved in generation of a negative summating potential and the dc motion of the cochlear partition described by others.

摘要

尼莫地平是一种L型Ca2+通道拮抗剂,通过豚鼠的声诱发耳蜗电位进行测试,以研究这些通道是否参与耳蜗功能。以2.5微升/分钟的速率将含有0.1 - 10微摩尔尼莫地平的人工外淋巴溶液灌注到豚鼠耳蜗的外淋巴间隙中,持续10分钟。从前庭阶的基底转记录由不同强度的10千赫短纯音诱发的耳蜗电位。尼莫地平的耳蜗灌注导致听神经复合动作电位(CAP;N1 - P1)出现可逆的、剂量相关的抑制,在阈上水平N1潜伏期延长,CAP阈值升高,在CAP阈值处测量的恒定振幅下N1潜伏期缩短,耳蜗微音电位(CM)降低,以及负和电位(SP)降低至变为正值的程度(即SP反转)。内淋巴电位(EP)未受影响。这些结果支持L型Ca2+通道直接参与柯蒂氏器运作的假说。我们推测L型Ca2+通道整体上参与负和电位的产生以及其他人所描述的耳蜗隔板的直流运动。

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