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电生理学和安培证据表明莫达非尼阻断多巴胺转运体以诱导行为激活。

Electrophysiological and amperometric evidence that modafinil blocks the dopamine uptake transporter to induce behavioral activation.

机构信息

IRCSS Fondazione Santa Lucia, 00143 Rome, Italy.

出版信息

Neuroscience. 2013 Nov 12;252:118-24. doi: 10.1016/j.neuroscience.2013.07.071. Epub 2013 Aug 8.

Abstract

Although the wake-promoting drug modafinil has been shown to bind quite exclusively to the dopamine transporter (DAT), its action in the brain has been thought to be partially independent from the facilitation of the dopaminergic signals. Here we used electrophysiological and amperometric techniques to investigate the effects of modafinil on the dopaminergic neurons of the substantia nigra pars compacta (SNpc) and on the synaptic overflow of dopamine in the dorsal striatum from the sliced tissue of wild-type and cocaine-insensitive genetically modified mice (DAT-CI). Moreover, we examined the consequences of modafinil administration on the locomotor behavior of wild-type and DAT-CI mice. In in vitro experiments, modafinil inhibited the spontaneous firing discharge of the dopaminergic neurons. More consistently, it potentiated firing inhibition and the membrane responses caused by exogenously applied dopamine on these cells. Furthermore, it augmented the stimulus-evoked outflow of DA in the striatum. Noteworthy, modafinil caused locomotor activation in wild-type mice. On the other hand, neither the electrophysiological nor the behavioral effects of modafinil were detected in DAT-CI animals. These results demonstrate that modafinil potentiates brain dopaminergic signals via DAT inhibition by acting at the same binding site of cocaine. Therefore, this mechanism of action explains most of the pharmacological properties of this compound in the clinical setting.

摘要

尽管促醒药物莫达非尼已被证明与多巴胺转运体(DAT)结合非常特异,但它在大脑中的作用被认为部分独立于促进多巴胺能信号。在这里,我们使用电生理和安培技术来研究莫达非尼对黑质致密部(SNpc)中的多巴胺能神经元以及从野生型和可卡因不敏感基因修饰小鼠(DAT-CI)的切片组织中背侧纹状体中多巴胺的突触溢出的影响。此外,我们还检查了莫达非尼给药对野生型和 DAT-CI 小鼠运动行为的影响。在体外实验中,莫达非尼抑制了多巴胺能神经元的自发放电。更一致的是,它增强了这些细胞上外源性应用多巴胺引起的放电抑制和膜反应。此外,它增强了刺激诱发的纹状体中 DA 的流出。值得注意的是,莫达非尼使野生型小鼠产生运动激活。另一方面,在 DAT-CI 动物中未检测到莫达非尼的电生理或行为作用。这些结果表明,莫达非尼通过抑制 DAT 来增强大脑多巴胺能信号,其作用方式与可卡因相同。因此,这种作用机制解释了该化合物在临床环境中的大多数药理学特性。

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