Ninomiya Y, Funakoshi M
Jpn J Physiol. 1981;31(6):891-902. doi: 10.2170/jjphysiol.31.891.
The role of ions in the generation of taste nerve responses to electric currents was studied by examining integrated responses and single fiber discharges of the chorda tympani nerve to chemical and electrical stimulations of the tongue in rats. Integrated chorda tympani responses to anodal currents were suppressed after cessation of the blood flow to the tongue and on application of FeCl3 to the tongue surface. These findings indicate that electric currents do not stimulate the nerve directly but activate taste cells to evoke neural discharges. Magnitude of the integrated response to anodal current decreased with a decrease in concentration and with an increase in flow rate of the bathing solution applied over the tongue during electrical stimulation. All the chorda tympani fibers responsive to a certain electrolyte responded to anodal or cathodal current in the presence of the same electrolyte at its subliminal concentration in the flow chamber. However, there were a few fibers which did not respond to a few electrolytes, but responded to currents in the presence of either one of the electrolytes even at their much lower concentrations. Across-fiber correlations between the responses to chemical stimuli and anodal currents in the presence of the chemical solutions in the flow chamber indicated that responsiveness to anodal current was not always dependent on species of cation in the bathing solution. From these findings, we assume that the response to electric current is due to the effect of electrophoretically carried ions on not only specific but also non-specific receptor mechanisms for the ions.
通过检测大鼠鼓索神经对舌部化学和电刺激的整合反应及单纤维放电,研究了离子在味觉神经对电流产生反应中的作用。在舌部血流停止后以及在舌表面施加FeCl3后,鼓索神经对阳极电流的整合反应受到抑制。这些发现表明电流并非直接刺激神经,而是激活味觉细胞以引发神经放电。在电刺激期间,随着施加在舌部的灌流溶液浓度降低和流速增加,对阳极电流的整合反应幅度减小。在流室中,所有对特定电解质有反应的鼓索神经纤维在相同电解质阈下浓度存在时,对阳极或阴极电流都有反应。然而,有少数纤维对几种电解质无反应,但即使在浓度低得多的情况下,在其中一种电解质存在时对电流有反应。流室中化学溶液存在时,对化学刺激和阳极电流的反应之间的跨纤维相关性表明,对阳极电流的反应性并不总是取决于灌流溶液中阳离子的种类。基于这些发现,我们推测对电流的反应是由于电泳携带的离子不仅对离子的特异性受体机制,而且对非特异性受体机制产生了影响。