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Calcium-induced calcium release in rat sensory neurons.

机译:钙诱导大鼠感觉神经元中的钙释放。

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1. In isolated dorsal root ganglion cells (DRG neurons), changes in the concentration of global cytosolic Ca2+ (delta [Ca2+]c) were measured by the fluorescence of K5-indo-1. Depolarizations from -60 to 0 mV (500 ms) and Ca2+ influx through Ca2+ channels (ICa) increased [Ca2+]c by 480 +/- 113 nM, the peak occurring 542 +/- 76 ms (mean +/- S.E.M.) after repolarization. 2. Ryanodine (10 microM) reduced depolarization-induced delta [Ca2+]c by up to 80% and blocked delta [Ca2+]c induced by 20 mM caffeine. 3. Peak delta [Ca2+]c and peak ICa followed a similar bell-shaped voltage dependence. Removal of extracellular Ca2+ abolished depolarization-induced delta [Ca2+]c; its elevation from 2 to 8 mM increased peak ICa by 30% and delta [Ca2+]c by 108%. 4. Ca2+ influx at 0 mV was graded by pulse durations between 20 and 500 ms. Up to 200 ms, delta [Ca2+]c increased linearly with Ca2+ influx. Depolarizations longer than 200 ms induced a supralinear increase in delta [Ca2+]c that was abolished by caffeine (20 mM). 5. The supralinear increase in delta [Ca2+]c and the caffeine-induced delta [Ca2+]c were measured only in thirteen of nineteen DRG neurons; in the other six of nineteen cells both properties were absent. The results suggest that Ca(2+)-induced Ca2+ release (CICR) is expressed differently in different populations of DRG neurons. 6. A single action potential did not significantly increase [Ca2+]c. Trains of stimuli (20 Hz) induced delta [Ca2+]c that linearly increased with the number of action potentials. Delta [Ca2+]c due to 100 action potentials had a significant ryanodine-sensitive component. 7. It is discussed that CICR can contribute to the depolarization-induced [Ca2+]c, provided the Ca2+ influx lasts for a certain minimum period of time.
机译:1.在分离的背根神经节细胞(DRG神经元)中,通过K5-indo-1的荧光测量整体胞质Ca2 +(δ[Ca2 +] c)浓度的变化。从-60到0 mV(500 ms)的去极化和通过Ca2 +通道(ICa)的Ca2 +流入使[Ca2 +] c增加480 +/- 113 nM,峰值出现在542 +/- 76 ms(平均+/- SEM)之后再极化。 2. Ryanodine(10 microM)将去极化诱导的δ[Ca2 +] c降低多达80%,并阻断了20 mM咖啡因诱导的δ[Ca2 +] c。 3.峰δ[Ca2 +] c和峰ICa遵循相似的钟形电压依赖性。去除细胞外Ca2 +消除了去极化诱导的δ[Ca2 +] c。其从2 mM升高到8 mM可使峰的ICa升高30%,δ[Ca2 +] c升高108%。 4.通过在20到500 ms之间的脉冲持续时间对0 mV下的Ca2 +流入量进行分级。直到200毫秒,δ[Ca2 +] c随Ca2 +流入量线性增加。超过200毫秒的去极化会导致咖啡因(20 mM)消除[Ca2 +] c的超线性增加。 5.仅在19个DRG神经元中的13个中测量了δ[Ca2 +] c超线性增加和咖啡因诱导的δ[Ca2 +] c。在19个单元中的其他六个中,两个属性都不存在。结果表明,Ca(2+)诱导的Ca2 +释放(CICR)在DRG神经元的不同群体中表达不同。 6.单个动作电位并未显着增加[Ca2 +] c。一系列刺激(20 Hz)诱导δ[Ca2 +] c随动作电位的数量线性增加。由于100个动作电位而导致的Delta [Ca2 +] c具有明显的对ryanodine敏感的成分。 7.讨论了,如果Ca2 +流入持续一定的最短时间,则CICR可以促进去极化诱导的[Ca2 +] c。

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