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首页> 外文期刊>Molecular and Biochemical Parasitology >Levamisole and ryanodine receptors. II: An electrophysiological study in Ascaris suum.
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Levamisole and ryanodine receptors. II: An electrophysiological study in Ascaris suum.

机译:Levamisole和ryanodine受体。 II:猪A虫的电生理研究。

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Resistance to antinematodal drugs like levamisole has increased and there is a need to understand what factors affect the responses to these anthelmintics. In our previous study, we examined the role of ryanodine receptors in muscle contraction pathways. Here we have examined interactions of levamisole receptors, ryanodine receptors (RyRs), the excitatory neuropeptide AF2, and coupling to electrophysiological responses. We examined the effects of a brief application of levamisole on Ascaris suum body muscle under current-clamp. The levamisole responses were characterized as an initial primary depolarization, followed by a slow secondary depolarizing response. We examined the effects of AF2 (KHEYLRFamide), 1 microM applied for 2 min. We found that AF2 potentiated the secondary response to levamisole and had no significant effect on the primary depolarization. Further, the reversal potentials observed during the secondary response suggested that more than one ion was involved in producing this potential. AF2 potentiated the secondary response in the presence of 30 microM mecamylamine suggesting the effect was independent of levamisole sensitive acetylcholine receptors. The secondary response, potentiated by AF2, appeared to be dependent on cytoplasmic events triggered by the primary depolarization. Ion-substitution experiments showed that the AF2 potentiated secondary response was dependent on extracellular calcium and chloride suggesting a role for the calcium-activated anion channel. Caffeine mimicked the AF2 potentiated secondary response and 0.1 microM ryanodine inhibited it. 1.0 microM ryanodine increased spiking showing that it affected membrane excitability. A model is proposed showing ryanodine receptors mediating effects of AF2 on levamisole responses.
机译:对象左旋咪唑这样的杀线虫药物的抵抗力增加了,有必要了解哪些因素会影响对这些驱虫药的反应。在我们以前的研究中,我们检查了莱丹碱受体在肌肉收缩途径中的作用。在这里,我们检查了左旋咪唑受体,ryanodine受体(RyRs),兴奋性神经肽AF2的相互作用以及与电生理反应的耦合。我们研究了在电流钳下短暂施用左旋咪唑对scar虫scar体肌的影响。左旋咪唑的反应特征是最初的初次去极化反应,然后是缓慢的继发性去极化反应。我们检查了AF2(KHEYLRFamide),1 microM施加2分钟的效果。我们发现AF2增强了对左旋咪唑的继发反应,并且对一次去极化没有显着影响。此外,在次要反应期间观察到的反转电位表明产生该电位涉及多个离子。 AF2在存在30 microM美加明的情况下增强了次要反应,表明该作用独立于对左旋咪唑敏感的乙酰胆碱受体。 AF2增强的次级反应似乎取决于初级去极化触发的细胞质事件。离子取代实验表明,AF2增强的继发反应依赖于细胞外钙和氯离子,提示钙激活的阴离子通道起作用。咖啡因模仿了AF2增强的继发反应,而0.1 microM ryanodine抑制了它。 1.0 microM ryanodine增加了尖峰,表明它影响了膜的兴奋性。提出了一个模型,该模型显示了ryanodine受体介导AF2对左旋咪唑应答的作用。

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