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鸡睫状神经元胞体中动作电位引发的钙瞬变。

Calcium transients evoked by action potentials in the somata of chick ciliary neurons.

作者信息

Brain K L, Bennett M R

机构信息

The Institute for Biomedical Research and The Physiology Dept., University of Sydney, NSW, Australia.

出版信息

J Auton Nerv Syst. 1998 Jul 15;71(2-3):120-33. doi: 10.1016/s0165-1838(98)00066-6.

Abstract

The effect of action potentials on the calcium concentration in the somata of chick ciliary neurons ([Ca2+]s) was determined by loading these with the calcium indicator calcium green-1. Following trains of 1-10 impulses (30 Hz) to the postganglionic nerve, the [Ca2+]s increased rapidly and then declined along a single exponential with a time constant of 0.70 +/- 0.04 s (fast phase). After trains of 20 or 50 impulses, the elevated [Ca2+]s declined as the sum of two exponentials, with time constants of 0.78 +/- 0.12 s (fast phase) and 4.0 +/- 0.4 s (moderate phase). After a 600-impulse postganglionic train of impulses, the elevated [Ca2+]s declined quickly over about 1 s, and then as the sum of two exponentials: that of the moderate phase and a slower component with a time constant of 109 +/- 16 s (slow phase). Similar time courses were observed following stimuli to the preganglionic nerve. Caffeine (3 mM) and ryanodine (20 microM) both sped the fast phase and slowed the moderate phase of [Ca2+]s decline. Carbonyl cyanide m-chlorophenyl hydrazone (CCCP, 2 microM) slowed the slow phase, without affecting the other phases of decline. These results are discussed in relation to identifying the mechanisms responsible for these different phases of Ca2+ removal.

摘要

通过用钙指示剂钙绿-1加载鸡睫状神经元胞体来测定动作电位对其钙浓度([Ca2+]s)的影响。对节后神经施加1 - 10次脉冲(30 Hz)的串刺激后,[Ca2+]s迅速升高,然后沿单一指数下降,时间常数为0.70±0.04 s(快速相)。施加20或50次脉冲串刺激后,升高的[Ca2+]s以两个指数之和的形式下降,时间常数分别为0.78±0.12 s(快速相)和4.0±0.4 s(中等相)。在对节后神经施加600次脉冲串刺激后,升高的[Ca2+]s在约1 s内迅速下降,然后以两个指数之和的形式下降:中等相和一个时间常数为109±16 s的较慢成分(缓慢相)。对节前神经进行刺激后也观察到类似的时间进程。咖啡因(3 mM)和ryanodine(20 μM)均加快了[Ca2+]s下降的快速相并减慢了中等相。羰基氰化物间氯苯腙(CCCP,2 μM)减慢了缓慢相,而不影响其他下降相。本文结合确定负责这些不同钙移除阶段的机制对这些结果进行了讨论。

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