首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Light-dependent repetitive Ca2+ spikes induced by extracellular application of neomycin in honeybee drone photoreceptors
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Light-dependent repetitive Ca2+ spikes induced by extracellular application of neomycin in honeybee drone photoreceptors

机译:细胞外应用新霉素在蜜蜂无人机感光器中诱导的光依赖性重复性Ca2 +尖峰

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摘要

Photoreceptor cells of the honeybee drone fire, in the presence of the polycationic aminoglycoside neomycin, repetitive slow spike-like potentials superimposed on the receptor potential plateau phase. We have used conventional intracellular recordings and micro-fluorometric intracellular Ca2+ measurements to characterize these spike potentials. We have shown that the spike frequency increases in a light-intensity-dependent manner. The spikes are fired only when light stimuli depolarize the cell from a resting potential of -50 to -60 mV to at least -40 to --45 mV; they are tetrodotoxin insensitive and blocked by the Ca2+ channel blockers Ni2+, Cd2+, omega-agatoxin TK, verapamil and methoxyverapamil. Depolarization of the photoreceptors with high extracellular K+ in the presence of neomycin in darkness does not generate spikes. Small intracellular Ca2+ oscillations superimposed on the plateau phase of the light-induced increase in intracellular free Ca2+ concentration have a similar temporal pattern as the spike-like potentials. We conclude that the spike-like potentials require stimulation by light and are generated by voltage-dependent Ca2+ channels localized on the soma of the photoreceptors, distal to the basal lamina. [References: 34]
机译:在聚阳离子氨基糖苷新霉素的存在下,蜜蜂无人机的感光细胞着火,其重复的缓慢的尖峰状电位叠加在受体电位的稳定期上。我们已经使用常规的细胞内记录和微荧光细胞内Ca2 +测量来表征这些尖峰电位。我们已经表明,尖峰频率以光强度相关的方式增加。仅当光刺激使细胞从-50至-60 mV的静息电位降低到至少-40至-45 mV的静息电位时才发射尖峰。它们对河豚毒素不敏感,并被Ca2 +通道阻滞剂Ni2 +,Cd2 +,ω-抗毒素TK,维拉帕米和甲氧基维拉帕米所阻断。在黑暗中存在新霉素的情况下,具有高细胞外K +的感光细胞去极化不会产生尖峰。叠加在光诱导的细胞内游离Ca2 +浓度增加的平稳期的平台期上的小细胞内Ca2 +振荡具有与尖峰样电位相似的时间模式。我们得出的结论是,类似尖峰的电位需要光的刺激,并且是由位于基底层远端的感光体的体细胞上的电压依赖性Ca2 +通道产生的。 [参考:34]

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