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快速钙瞬变反映了单个感觉神经元不同区域神经活动的分布和传导。

Fast calcium transients translate the distribution and conduction of neural activity in different regions of a single sensory neuron.

作者信息

Purali Nuhan

机构信息

Faculty of Medicine, Department of Biophysics, Hacettepe University, 06100, Sihhiye, Ankara, Turkey.

出版信息

Invert Neurosci. 2017 Sep;17(3):7. doi: 10.1007/s10158-017-0201-3. Epub 2017 Jun 13.

Abstract

In the present study, cytosolic calcium concentration changes were recorded in response to various forms of excitations, using the fluorescent calcium indicator dye OG-BAPTA1 together with the current or voltage clamp methods in stretch receptor neurons of crayfish. A single action potential evoked a rise in the resting calcium level in the axon and axonal hillock, whereas an impulse train or a large saturating current injection would be required to evoke an equivalent response in the dendrite region. Under voltage clamp conditions, amplitude differences between axon and dendrite responses vanished completely. The fast activation time and the modulation of the response by extracellular calcium concentration changes indicated that the evoked calcium transients might be mediated by calcium entry into the cytosol through a voltage-gated calcium channel. The decay of the responses was slow and sensitive to extracellular sodium and calcium concentrations as well as exposure to 1-10 mM NiCl and 10-500 µM lanthanum. Thus, a sodium calcium exchanger and a calcium ATPase might be responsible for calcium extrusion from the cytosol. Present results indicate that the calcium indicator OG-BAPTA1 might be an efficient but indirect way of monitoring regional membrane potential differences in a single neuron.

摘要

在本研究中,使用荧光钙指示剂染料OG-BAPTA1并结合电流钳或电压钳方法,在小龙虾的牵张感受器神经元中记录了细胞溶质钙浓度响应各种形式刺激的变化。单个动作电位可引起轴突和轴突丘静息钙水平升高,而在树突区域则需要一串冲动或大的饱和电流注入才能引起等效反应。在电压钳条件下,轴突和树突反应之间的幅度差异完全消失。快速激活时间以及细胞外钙浓度变化对反应的调节表明,诱发的钙瞬变可能是由钙通过电压门控钙通道进入细胞质介导的。反应的衰减缓慢,并且对细胞外钠和钙浓度以及暴露于1-10 mM氯化镍和10-500 μM镧敏感。因此,钠钙交换器和钙ATP酶可能负责从细胞质中排出钙。目前的结果表明,钙指示剂OG-BAPTA1可能是监测单个神经元区域膜电位差异的一种有效但间接的方法。

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