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硝苯地平可阻断蜂毒明肽诱导的黑质含多巴胺神经元的爆发性活动。

Nifedipine blocks apamin-induced bursting activity in nigral dopamine-containing neurons.

作者信息

Shepard P D, Stump D

机构信息

Maryland Psychiatric Research Center, P.O. Box 21247, Catonsville, MD 21228,

出版信息

Brain Res. 1999 Jan 30;817(1-2):104-9. doi: 10.1016/s0006-8993(98)01231-1.

Abstract

Intrinsic sinusoidal oscillations in membrane potential, characteristic of nigral dopamine cells, are converted to plateau potentials following application of apamin, a potent antagonist of SK-type Ca2+-activated K+ channels. Blockade of these channels also changes neuronal firing pattern from a single-spike pacemaker discharge to a multiple spike bursting pattern. Nifedipine, a selective antagonist of L-type Ca2+ channels, blocks plateau potential generation; however, its effects on firing pattern have yet to be determined. In the present study, extracellular single unit recording techniques were used in conjunction with a brain slice preparation to determine whether nifedipine, in a concentration known to block plateau potential generation, also affects bursting activity. Nifedipine (30 microM) was equipotent in inhibiting the firing rate of control (51.2+/-10.8%) and apamin-treated (44.9+/-5.4%) neurons. Slow firing neurons (<2 Hz) were particularly sensitive to the inhibitory effects of the drug. Apamin-induced bursting was completely suppressed by nifedipine and accompanied by a significant increase in the regularity of firing. By contrast, pacemaker-like activity exhibited by control neurons was unaffected by the drug. These data demonstrate that the intrinsic plateau properties exhibited by DA neurons are responsible for the generation of phasic activity induced following blockade of apamin-sensitive Ca2+-activated K+ channels and provide further support for the involvement of an L-type Ca2+ conductance in mediating this type of activity.

摘要

黑质多巴胺能细胞特有的膜电位内在正弦振荡,在应用蜂毒明肽(一种SK型钙激活钾通道的强效拮抗剂)后会转变为平台电位。这些通道的阻断还会使神经元的放电模式从单峰起搏器放电转变为多峰爆发模式。硝苯地平是一种L型钙通道的选择性拮抗剂,可阻断平台电位的产生;然而,其对放电模式的影响尚未确定。在本研究中,细胞外单单位记录技术与脑片制备相结合,以确定硝苯地平在已知能阻断平台电位产生的浓度下是否也会影响爆发活动。硝苯地平(30微摩尔)在抑制对照神经元(51.2±10.8%)和蜂毒明肽处理的神经元(44.9±5.4%)的放电率方面具有同等效力。慢放电神经元(<2赫兹)对该药物的抑制作用尤为敏感。硝苯地平完全抑制了蜂毒明肽诱导的爆发,并伴随着放电规律性的显著增加。相比之下,对照神经元表现出的起搏器样活动不受该药物影响。这些数据表明,多巴胺能神经元表现出的内在平台特性负责在阻断蜂毒明肽敏感的钙激活钾通道后诱导的相位活动的产生,并为L型钙电导参与介导这种类型的活动提供了进一步的支持。

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