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Effect of Superoxide Derived from Lucifer Yellow CH on Voltage-Gated Currents of Mouse Taste Bud Cells

机译:萤光黄CH超氧化物对小鼠味蕾细胞电压门控电流的影响

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摘要

Lucifer yellow CH(LY),a fluorescent membrane-impermeable cell marker dye,has been routinely loaded into cells through recording electrodes to visualize these cells after electrophysiological investigation,without considering its pharmacological effect.Recently,we showed that the exposure of cells loaded with LY to light for microscopy produced unidentified radical species that retarded the inactivation of voltage-gated Na+ currents irreversibly(Higure Y et al.2003).Here,we show that superoxide dismutase,an enzyme that decomposes superoxide,reverses the retardation effect,which assures that superoxide is the unidentified radical species.The estimated mean lifetime of superoxide in recording electrodes(in the absence of cytoplasm)is approximately 6 min,and hence,the Na+ currents are retarded even in the dark,when LY is exposed to light before being loaded into the cell.Superoxide has no effect on voltage-gated CI"currents.These results show that superoxide action on ion channels is rather selective.The breakdown of superoxide inside cells and the effect of endogenous superoxide on the superoxide-susceptible channels are discussed.
机译:荧光膜不透性细胞标记染料路西法黄CH(LY)已通过记录电极常规地通过记录电极加载到细胞中,以便在不考虑其药理作用的情况下通过电生理学观察使这些细胞可视化。 LY对光进行显微镜观察时产生了无法识别的自由基种类,这些自由基种类不可逆地阻止了电压门控的Na +电流的失活(Higure Y等人,2003年)。在这里,我们证明了超氧化物歧化酶是一种分解超氧化物的酶,它逆转了阻滞作用,从而确保了记录电极中超氧化物的平均寿命估计(在没有细胞质的情况下)约为6分钟,因此,即使在黑暗中,当LY暴露于LY之前,Na +电流也被阻滞。超氧化物对电压门控CI“电流没有影响。这些结果表明,超氧化物对离子通道的作用是讨论了细胞内超氧化物的分解以及内源超氧化物对超氧化物敏感性通道的影响。

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