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首页> 外文期刊>Neuropsychopharmacology >Psychostimulants Induce Low-Frequency Oscillations in the Firing Activity of Dopamine Neurons
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Psychostimulants Induce Low-Frequency Oscillations in the Firing Activity of Dopamine Neurons

机译:心理刺激剂在多巴胺神经元的发射活动中诱导低频振荡。

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The reinforcing properties of psychostimulants depend critically on their effects on dopamine (DA) neurons in the ventral tegmental area (VTA). Using in vivo single unit recording in rats and spectral analysis, this study presents evidence for a new, non-DA-mediated effect of psychostimulants on VTA DA neurons. Thus, as previously observed with D-amphetamine, all psychostimulants tested, including cocaine, methamphetamine, and methylphenidate, had two opposing effects on firing rate of DA neurons: a DA-mediated inhibition and a non-DA-mediated excitation. The latter effect was normally masked by the DA-mediated inhibition and was revealed when the inhibition was blocked by a DA antagonist. Using spectral analysis, this study further showed that during psychostimulant-induced excitation, DA cells exhibited not only an increase in firing rate and bursting but also a low-frequency rhythmic oscillation (0.5–1.5 Hz) in their firing activity. The oscillatory response was unique to psychostimulants since it was not observed with the GABAA agonist muscimol, which also increased DA cell firing, and not mimicked by the nonpsychostimulant DA agonist L-dopa. Results further suggest that the effect requires activation of adrenergic 1 receptors and depends on intact forebrain inputs to DA neurons. Further understanding of this novel effect may provide important insights into both the mechanism of action of psychostimulants and the neuronal circuitry that controls the activity of DA neurons in the brain.
机译:精神兴奋药的增强特性主要取决于其对腹侧被盖区(VTA)中多巴胺(DA)神经元的影响。使用大鼠体内的单个单位记录和光谱分析,这项研究为精神刺激药对VTA DA神经元的非DA介导的新作用提供了证据。因此,如先前使用D-苯丙胺所观察到的,所有测试的精神刺激药,包括可卡因,甲基苯丙胺和哌醋甲酯,对DA神经元的放电速率有两个相反的影响:DA介导的抑制作用和非DA介导的兴奋作用。后者的作用通常被DA介导的抑制作用所掩盖,并且当该抑制作用被DA拮抗剂阻断时就会显示出来。使用频谱分析,这项研究进一步表明,在精神兴奋剂诱导的兴奋过程中,DA细胞不仅在发射速率和爆发中表现出增加,而且在其发射活动中还表现出低频节律性振荡(0.5-1.5 Hz)。振荡反应是精神兴奋剂所特有的,因为在GABAA激动剂麝香酚中未观察到,这也增加了DA细胞的发射,并且不受非精神兴奋剂DA激动剂L-多巴的模仿。结果进一步表明,该作用需要激活肾上腺素1受体,并取决于DA神经元的完整前脑输入。对这种新颖作用的进一步了解可能为精神刺激药的作用机理和控制大脑中DA神经元活动的神经元回路提供重要见解。

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