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Electrophysiological Effects of SKF83959 on Hippocampal CA1 Pyramidal Neurons: Potential Mechanisms for the Drug's Neuroprotective Effects

机译:SKF83959对海马CA1锥体神经元的电生理作用:药物神经保护作用的潜在机制。

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摘要

Although the potent anti-parkinsonian action of the atypical D1-like receptor agonist SKF83959 has been attributed to the selective activation of phosphoinositol(PI)-linked D1 receptor, whereas the mechanism underlying its potent neuroprotective effect is not fully understood. In the present study, the actions of SKF83959 on neuronal membrane potential and neuronal excitability were investigated in CA1 pyramidal neurons of rat hippocampal slices. SKF83959 (10–100 µM) caused a concentration-dependent depolarization, associated with a reduction of input resistance in CA1 pyramidal neurons. The depolarization was blocked neither by antagonists for D1, D2, 5-HT2A/2C receptors and α1-adrenoceptor, nor by intracellular dialysis of GDP-β-S. However, the specific HCN channel blocker ZD7288 (10 µM) antagonized both the depolarization and reduction of input resistance caused by SKF83959. In voltage-clamp experiments, SKF83959 (10–100 µM) caused a concentration-dependent increase of Ih current in CA1 pyramidal neurons, which was independent of D1 receptor activation. Moreover, SKF83959 (50 µM) caused a 6 mV positive shift in the activation curve of Ih and significantly accelerated the activation of Ih current. In addition, SKF83959 also reduced the neuronal excitability of CA1 pyramidal neurons, which was manifested by the decrease in the number and amplitude of action potentials evoked by depolarizing currents, and by the increase of firing threshold and rhoebase current. The above results suggest that SKF83959 increased Ih current through a D1 receptor-independent mechanism, which led to the depolarization of hippocampal CA1 pyramidal neurons. These findings provide a novel mechanism for the drug's neuroprotective effects, which may contributes to its therapeutic benefits in Parkinson's disease.
机译:虽然非典型D1样受体激动剂SKF83959的有效抗帕金森病作用已归因于磷酸肌醇(PI)连接的D1受体的选择性激活,但其潜在的神经保护作用的机制尚不完全清楚。在本研究中,在大鼠海马切片的CA1锥体神经元中研究了SKF83959对神经元膜电位和神经元兴奋性的作用。 SKF83959(10–100 µM)引起浓度依赖性去极化,与CA1锥体神经元输入电阻的降低有关。去极化既不受D1,D2、5-HT2A / 2C受体和α1-肾上腺素受体拮抗剂的阻碍,也不受细胞内GDP-β-S透析的阻碍。但是,特定的HCN通道阻滞剂ZD7288(10 µM)既能消除去极化作用,又能防止SKF83959引起的输入电阻降低。在电压钳实验中,SKF83959(10-100 µM)在CA1锥体神经元中引起浓度依赖性的Ih电流增加,这与D1受体的激活无关。此外,SKF83959(50 µM)在Ih的激活曲线中引起了6 mV的正移,并显着加速了Ih电流的激活。此外,SKF83959还降低了CA1锥体神经元的神经元兴奋性,这表现为由去极化电流引起的动作电位的数量和幅度减少,以及放电阈值和r基电流的增加。以上结果表明,SKF83959通过不依赖D1受体的机制增加了Ih电流,从而导致海马CA1锥体神经元去极化。这些发现为该药物的神经保护作用提供了新的机制,这可能有助于其对帕金森氏病的治疗作用。

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