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Slow potentials in taste cells induced by frog glossopharyngeal nerve stimulation

机译:青蛙舌咽神经刺激在味觉细胞中的慢电位

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Intracellular recordings were made from the taste cells of atropinized bullfrogs while the glossopharyngeal (GP) nerve fibres were electrically stimulated. Two types of slow potential, slow hyperpolarizing potentials (HPs) and slow depolarizing potentials (DPs), were induced in the taste cells. The slow HPs appeared when the lingual capillary blood flow was kept above 0.7 mm/s whereas the slow DPs appeared when the blood flow was slowed down below 0.7 mm/s. The membrane resistance of a taste cell increased during the generation of a slow HP, but decreased during the generation of a slow DP. The reversal potentials for the slow Hps and the slow DPs were recorded at the same membrane potential (-11 to approx -13 mV). Activation of non-selective cation channels possibly induced the slow DP and inactivation of those channels possibly induced the slow HP in the taste cell membrane. Electrical stimulation of the GP nerve activated a population of C fibres in the nerve and possibly released neurotransmitters from the nerve terminals. Released neurotransmitters might cause modulation of the membrane conductance in taste cells that leads to generation of the slow potentials. The present data suggest that slow HPs and slow DPs evoked in the taste cells of atropinized frogs by GP nerve stimulation are induced by putative neurotransmitters in the taste disc.
机译:在电刺激舌咽(GP)神经纤维的同时,从麻疯牛蛙的味觉细胞进行细胞内记录。在味觉细胞中诱导了两种类型的慢电位,慢超极化电位(HPs)和慢去极化电位(DPs)。当舌毛细血管血流保持在0.7 mm / s以上时,HPs缓慢出现,而当血流缓慢降至0.7 mm / s以下时,DPs缓慢出现。味觉细胞的膜抗性在缓慢的HP产生期间增加,但在缓慢的DP产生期间降低。在相同的膜电位(-11至约-13 mV)下记录慢Hps和慢DP的反向电位。非选择性阳离子通道的激活可能导致缓慢的DP,而那些通道的失活可能导致味觉细胞膜中的HP缓慢。 GP神经的电刺激激活了神经中的C纤维群,并可能从神经末梢释放了神经递质。释放的神经递质可能会引起味觉细胞膜电导的调节,从而导致缓慢电位的产生。目前的数据表明,GP神经刺激在atropinized青蛙的味觉室中诱发的慢速HP和慢速DPs是由味觉盘中假定的神经递质诱导的。

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