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兔结状神经节C细胞中钙峰起始的证据。

Evidence for initiation of calcium spikes in C-cells of the rabbit nodose ganglion.

作者信息

Ito H

出版信息

Pflugers Arch. 1982 Aug;394(2):106-12. doi: 10.1007/BF00582910.

Abstract

In Na+-free solution or in tetrodotoxin (TTX, 10(-6) M) solution, direct electrical stimulation of nodose ganglion C-cells of the rabbit elicited regenerative action potentials. The amplitude of the action potentials generated in these neurons is dependent on the external Ca2+ concentration ([Ca2+]0). These action potentials were characterized by reduced amplitude, prolonged duration, and graded responses to changes of the stimulation intensity. Either removal of [Ca2+]0 or application of organic Ca2+-blocking agents, diltiazem (10(-5) M) or verapamil (10(-5) M), abolished these action potentials. The conduction of action potentials along the axon was blocked in Na+-free solution or by application of TTX. The present results provide evidence for the initiation of Ca2+-dependent action potentials in the soma membrane of mammalian nodose ganglia, and suggest that the Ca2+ ion plays an important role in the development of action potentials in the C-cell of rabbit nodose ganglia.

摘要

在无钠溶液或河豚毒素(TTX,10⁻⁶ M)溶液中,直接电刺激兔结状神经节C细胞可诱发再生动作电位。这些神经元产生的动作电位幅度取决于细胞外Ca²⁺浓度([Ca²⁺]₀)。这些动作电位的特点是幅度降低、持续时间延长以及对刺激强度变化呈分级反应。去除[Ca²⁺]₀或应用有机Ca²⁺阻滞剂地尔硫卓(10⁻⁵ M)或维拉帕米(10⁻⁵ M)均可消除这些动作电位。动作电位沿轴突的传导在无钠溶液中或应用TTX时被阻断。目前的结果为哺乳动物结状神经节胞体膜上Ca²⁺依赖性动作电位的起始提供了证据,并表明Ca²⁺离子在兔结状神经节C细胞动作电位的产生中起重要作用。

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