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首页> 外文期刊>Chemical Senses >Characteristics of Biphasic Slow Depolarizing and Slow Hyperpolarizing Potential in Frog Taste Cell Induced by Parasympathetic Efferent Stimulation
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Characteristics of Biphasic Slow Depolarizing and Slow Hyperpolarizing Potential in Frog Taste Cell Induced by Parasympathetic Efferent Stimulation

机译:副交感神经传出刺激在青蛙味觉细胞中的两相慢去极化和慢超极化电位特性

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摘要

When the velocity of capillary blood flow in the frog tongue declined to an intermediate range of 0.2–0.7 mm/s, the glossopharyngeal nerve stimulation induced a biphasic slow depolarizing and slow hyperpolarizing potential (HP) in taste cells. The objective of this work was to examine the generative mechanisms of the biphasic slow potentials. The biphasic slow response was always preceded by a slow depolarizing potential (DP) component and followed by a slow HP component. Intravenous injection of tubocurarine completely blocked the biphasic slow responses, suggesting that both components of the biphasic slow potentials are evoked by the parasympathetic nerve (PSN) fibers. Membrane conductance of taste cells increased during slow DPs and decreased during slow HPs. The reversal potential of either component of a biphasic slow response was the almost same value of ?12 mV. An antagonist, L-703,606, for neurotransmitter substance P neurokinin1 receptor completely blocked both components of the biphasic slow responses. An antagonist, flufenamic acid, for nonselective cation channels on the taste cell membrane completely blocked the biphasic slow responses. These results suggest that PSN-induced biphasic slow responses are postsynaptically elicited in taste cells by releasing substance P at the PSN axon terminals. It is concluded that the slow DP component may be generated by opening one type of nonselective cation channel on taste cells and that the slow HP component may be generated by closing the other type of nonselective cation channel. We discussed that a second messenger inositol 1,4,5-trisphosphate might be related to a slow DP component and another second messenger diacylglycerol might be related to a slow HP component.
机译:当蛙舌中的毛细血管血流速度下降到0.2-0.7 mm / s的中间范围时,舌咽神经刺激在味觉细胞中引起了双相缓慢的去极化和缓慢的超极化电位(HP)。这项工作的目的是检查双相慢电位的产生机理。在双相缓慢反应之前,总是先有缓慢的去极化电位(DP)成分,然后是缓慢的HP成分。静脉注射微管尿素可完全阻断双相性慢反应,这表明副交感神经(PSN)纤维诱发了双相性慢电位的两个组成部分。味觉细胞的膜电导在缓慢的DPs中增加,而在缓慢的HPs中降低。双相慢响应中任一分量的反向电位几乎等于?12 mV。神经递质P神经激肽 1 受体的拮抗剂L-703606完全阻断了双相慢反应的两个部分。味精细胞膜上非选择性阳离子通道的拮抗剂氟芬那酸完全阻断了双相缓慢反应。这些结果表明,通过在PSN轴突末端释放P物质,在味觉细胞中突触后诱发PSN诱导的双相缓慢反应。结论是,可以通过在味觉室上打开一种类型的非选择性阳离子通道来生成慢速DP分量,并且可以通过关闭另一种类型的非选择性阳离子通道来生成慢速HP分量。我们讨论了第二种信使肌醇1,4,5-三磷酸可能与缓慢的DP成分有关,而另一种第二信使二酰基甘油可能与缓慢的HP成分有关。

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  • 来源
    《Chemical Senses》 |2007年第9期|817-823|共7页
  • 作者单位

    Division of Integrated Sensory Physiology Nagasaki University Graduate School of Biomedical Sciences 1-7-1 Sakamoto Nagasaki 852-8588 Japan;

    Division of Oral Pathopharmacology Nagasaki University Graduate School of Biomedical Sciences 1-7-1 Sakamoto Nagasaki 852-8588 Japan;

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