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首页> 外文期刊>Brain research >Voltage-gated channels involved in taste responses and characterizing taste bud cells in mouse soft palates.
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Voltage-gated channels involved in taste responses and characterizing taste bud cells in mouse soft palates.

机译:电压门控通道参与味觉反应并表征小鼠软中的味蕾细胞。

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Taste bud cells (TBCs) on soft palates differ from those on tongues in innervation and chemosensitivity. We investigated voltage-gated channels involved in the taste responses of TBCs on mouse soft palates under in-situ tight-seal voltage/current-clamp conditions. Under the cell-attached mode, TBCs spontaneously fired action currents, which were blocked by application of 1 microM TTX to TBC basolateral membranes. Firing frequencies increased in response to taste substances applied to TBC receptor membranes. Under the whole-cell clamp mode, as expected, TBCs produced various voltage-gated currents such as TTX-sensitive Na+ currents (INa), outward currents (Iout) including TEA-sensitive and insensitive currents, inward rectifier K+ currents (Iir), and Ca2+ currents including T-type, P/Q-type, and L-type Ca2+ currents. We classified TBCs into three types based on the magnitude of their voltage-gated Na+ currents and membrane capacitance. HEX type (60% of TBCs examined) was significantly larger in Na+ current magnitude and smaller in membrane capacitance than LEX type (23%). NEX type (17%) had no Na+ currents. HEX type was equally distributed within single taste buds, while LEX type was centrally distributed, and NEX type was peripherally distributed. There were correlations between these electrophysiological cell types and morphological cell types determined by three-dimensional reconstruction. The present results show that soft palate taste buds contain TBCs with different electrophysiological properties, and suggest that their co-operation is required in taste transduction.
机译:软味觉上的味蕾细胞(TBC)在神经支配和化学敏感性方面不同于舌头上的。我们研究了在原位紧密密封电压/电流钳条件下,小鼠软上TBCs味觉反应所涉及的电压门控通道。在细胞附着模式下,TBC自发激发动作电流,该动作电流被1 microM TTX应用于TBC基底外侧膜而被阻断。响应于应用于TBC受体膜的味觉物质,点火频率增加。如预期的那样,在全电池钳位模式下,TBC产生各种电压门控电流,例如TTX敏感的Na +电流(INa),向外的电流(Iout)包括TEA敏感和不敏感的电流,内向整流器K +电流(Iir), Ca2 +电流包括T型,P / Q型和L型Ca2 +电流。我们基于电压门控Na +电流和膜电容的大小将TBC分为三种类型。与LEX型(23%)相比,HEX型(所检查的TBC的60%)的Na +电流幅度明显更大,而膜电容较小。 NEX类型(17%)没有Na +电流。 HEX类型平均分布在单个味蕾中,而LEX类型分布在中央,而NEX类型分布在周边。这些电生理细胞类型与通过三维重建确定的形态细胞类型之间存在相关性。目前的结果表明,软味蕾含有不同电生理特性的TBC,提示味蕾需要它们的配合。

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