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虎螈体外嗅上皮中已识别细胞的电生理特性。

Electrophysiological properties of identified cells in the in vitro olfactory epithelium of the tiger salamander.

作者信息

Masukawa L M, Hedlund B, Shepherd G M

出版信息

J Neurosci. 1985 Jan;5(1):128-35. doi: 10.1523/JNEUROSCI.05-01-00128.1985.

Abstract

An in vitro preparation of the salamander olfactory epithelium has been developed for electrophysiological analysis. Intracellular measurements of membrane properties of the main epithelial cell types have been carried out, combined with Lucifer Yellow injections. The most prevalent type of cell had a high resting membrane potential and relatively low input resistance. This cell never discharged impulses, either spontaneously or to injected current. Lucifer Yellow injections identified this cell type as a supporting cell. A less frequent type had a medium resting potential and a very high input resistance. This type always discharged impulses in response to injected depolarizing current. Lucifer Yellow injections identified this cell type as an olfactory receptor neuron. The least frequent type had a medium resting potential and a high input resistance. It never generated action potentials. This nonspiking type was tentatively identified as an immature receptor neuron in the process of differentiating from basal stem cells in the epithelium. These are the first results to document physiological properties for the main cell types and morphological identification of two of the types in the same preparation of the olfactory epithelium. Our results support previous suggestions regarding the glial-like properties of the supporting cells. The membrane properties of the receptor neurons appear to be well suited for mediating the olfactory sensory response of these cells.

摘要

已开发出一种用于电生理分析的蝾螈嗅觉上皮体外制备方法。结合荧光黄注射,对主要上皮细胞类型的膜特性进行了细胞内测量。最常见的细胞类型具有高静息膜电位和相对较低的输入电阻。这种细胞无论是自发还是对注入电流都不会产生冲动。荧光黄注射将这种细胞类型鉴定为支持细胞。较不常见的细胞类型具有中等静息电位和非常高的输入电阻。这种类型总是对注入的去极化电流产生冲动。荧光黄注射将这种细胞类型鉴定为嗅觉受体神经元。最不常见的细胞类型具有中等静息电位和高输入电阻。它从不产生动作电位。这种非峰电位类型被初步鉴定为上皮中从基底干细胞分化过程中的未成熟受体神经元。这些是在同一嗅觉上皮制备中记录主要细胞类型的生理特性和两种类型的形态学鉴定的首批结果。我们的结果支持了先前关于支持细胞类神经胶质特性的建议。受体神经元的膜特性似乎非常适合介导这些细胞的嗅觉感觉反应。

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