首页> 美国卫生研究院文献>The Journal of Physiology >Gadolinium selectively blocks a component of calcium current in rodent neuroblastoma x glioma hybrid (NG108-15) cells.
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Gadolinium selectively blocks a component of calcium current in rodent neuroblastoma x glioma hybrid (NG108-15) cells.

机译:selectively选择性地阻断啮齿动物神经母细胞瘤x胶质瘤杂交细胞(NG108-15)中钙电流的一部分。

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摘要

1. The effect of the lanthanide cation Gd3+ on voltage-dependent calcium currents in neuroblastoma x glioma (NG108-15) cells has been studied using a whole-cell clamp technique. 2. Gd3+ reduced the amplitude of calcium currents. The amount of inhibition produced by Gd3+ was concentration dependent between about 0.5 and 5 microM and reached a maximum at about 10-20 microM. 3. A proportion of the total calcium current was resistant to blockade by Gd3+. 4. Gd3+-resistant calcium current consisted of two components: a rapidly inactivating, 'fast' component which was activated at potentials more positive than about -45 mV, and a long-lasting, 'slow' component which was activated at potentials more positive than about -10 mV. 5. It was possible to isolate the slow component, in the presence of Gd3+, by selectively inactivating the fast component with a brief depolarizing pre-pulse. The fast and slow components of current probably reflect the activity of two subpopulations of calcium channels which are resistant to block by Gd3+. 6. In control conditions inactivation of calcium current could be described by the sum of a fast (tau congruent to 40 ms at +10 mV) and a slow (tau congruent to 800 ms at +10 mV) exponential decay plus a constant. Gd3+ selectively blocked the slowly decaying current. 7. The current blocked by Gd3+ was activated at potentials more positive than about -35 mV and decayed monoexponentially (tau congruent to 800 ms at +10 mV). 8. It is concluded that under the experimental conditions used in the present study calcium currents recorded in NG108-15 cells are made up of at least three components which reflect the activity of three distinct subpopulations of calcium channels, one of which is selectively blocked by Gd3+.
机译:1.已使用全细胞钳技术研究了镧系元素阳离子Gd3 +对成神经细胞瘤x胶质瘤(NG108-15)细胞中电压依赖性钙电流的影响。 2. Gd3 +降低了钙电流的幅度。由Gd3 +产生的抑制量取决于浓度,介于约0.5和5 microM之间,在约10-20 microM时达到最大值。 3.总钙电流的一部分可抵抗Gd3 +的阻滞。 4.耐Gd3 +的钙电流包括两个成分:一个快速失活的“快”成分在高于-45 mV的正电势下被激活,以及一个持久的“慢”成分在更高的正电势下被激活。大约-10 mV。 5.在Gd3 +存在的情况下,可以通过短暂的去极化预脉冲选择性地使快速成分失活来分离慢速成分。电流的快和慢分量可能反映了钙通道的两个亚群的活性,这些亚群抵抗Gd3 +的阻滞。 6.在控制条件下,钙电流的失活可以用快速指数(在+10 mV时,tau等于40 ms)和缓慢的指数(在+10 mV时,tau等于800 ms)加上指数常数来表示。 Gd3 +选择性地阻止了缓慢衰减的电流。 7.被Gd3 +阻断的电流在高于-35 mV的正电势下被激活,并呈单指数衰减(τ在+10 mV时等于800 ms)。 8.结论是,在本研究中使用的实验条件下,NG108-15细胞中记录的钙电流由至少三个成分组成,这些成分反映了钙通道的三个不同亚群的活性,其中之一被钙离子选择性阻断。 Gd3 +。

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