蛙舌咽神经对电解质的味觉反应:Ni2+离子增强。

Dentistry in Japan Pub Date : 1990-01-01
Y Kitada
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引用次数: 0

摘要

在对青蛙舌咽神经全神经记录的研究中,Kashiwagura等人报道,Ni2+增强了对MgCl2和NaCl的反应,而这种增强的反应被Ca2+抑制。本研究发现,Ni2+可增强蛙舌咽神经单水纤维对电解质的反应。Ni2+增强了对MgCl2、NaCl和CaCl2的响应。对CaCl2反应的增强表明Ca2+对增强反应的抑制不是由受体膜上Ca2+和Ni2+离子的关系引起的。Kitada报道,在缺乏Ni2+的情况下,Ca2+竞争性地抑制了对Na+和Mg2+的反应;Kitada和Shimada报道了Na+和Mg2+对Ca2+反应的竞争性抑制。讨论了Ca2+抑制增强反应的可能性是由于Ca2+和Na+之间以及Ca2+和Mg2+之间对多个特定受体位点的竞争。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Taste responses to electrolytes in the frog glossopharyngeal nerve: enhancement by Ni2+ ions.

In studies of whole-nerve recordings from the frog glossopharyngeal nerve, Kashiwagura et al. reported that Ni2+ enhances responses to MgCl2 and NaCl and that such enhanced responses are suppressed by Ca2+. In the present study, it was found that the responses to electrolytes of single water fibers of the frog glossopharyngeal nerve are enhanced by Ni2+. Ni2+ enhances the responses to MgCl2, NaCl, and CaCl2. The enhancement of the response to CaCl2 suggests that inhibition of the enhanced response by Ca2+ is not caused by the relationship between Ca2+ and Ni2+ ions on the receptor membrane. Kitada reported that, in the absence of Ni2+, Ca2+ competitively inhibits the responses to Na+ and Mg2+; and Kitada and Shimada reported that the response to Ca2+ is competitively inhibited by Na+ and Mg2+. The possibility is discussed that inhibition of the enhanced response by Ca2+ is due to competition between Ca2+ and Na+ and between Ca2+ and Mg2+ for multiple specific receptor sites.

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