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Cocaine Increases Dopamine Release by Mobilization of a Synapsin-Dependent Reserve Pool

机译:可卡因通过动员突触素依赖性储备库提高多巴胺释放

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摘要

Cocaine primarily exerts its behavioral effects by enhancing dopaminergic neurotransmission, amplifying dopamine-encoded sensorimotor integration. The presumed mechanism for this effect is inhibition of the dopamine transporter, which blocks dopamine uptake and prolongs the duration of dopamine in the extracellular space. However, there is growing evidence that cocaine can also augment dopamine release. Here, we directly monitored the actions of cocaine on dopamine release by using electrochemical detection to measure extracellular dopamine in the striatum of anesthetized mice. Cocaine enhanced the levels of striatal dopamine produced by electrical stimulation of dopaminergic neurons. Even after pretreatment with α-methyl-p-tyrosine, which depletes the readily releasable pool of dopamine, cocaine was still capable of elevating dopamine levels. This suggests that cocaine enhances dopamine release by mobilizing a reserve pool of dopamine-containing synaptic vesicles. To test this hypothesis, we examined electrically evoked dopamine release in synapsin I/II/III triple knock-out mice, which have impaired synaptic vesicle reserve pools. Knock-out of synapsins greatly reduced the ability of cocaine to enhance dopamine release with long stimulus trains or after depletion of the newly synthesized pool. We therefore conclude that cocaine enhances dopamine release and does so by mobilizing a synapsin-dependent reserve pool of dopamine-containing synaptic vesicles. This capacity to enhance exocytotic release of dopamine may be important for the psychostimulant actions of cocaine.
机译:可卡因主要通过增强多巴胺能神经传递,放大多巴胺编码的感觉运动整合来发挥其行为作用。这种作用的推测机制是抑制多巴胺转运蛋白,其阻止多巴胺摄取并延长多巴胺在细胞外空间的持续时间。但是,越来越多的证据表明可卡因还可以增加多巴胺的释放。在这里,我们通过使用电化学检测来测量麻醉小鼠纹状体中的细胞外多巴胺,直接监测可卡因对多巴胺释放的作用。可卡因提高了多巴胺能神经元电刺激产生的纹状体多巴胺的水平。即使在用α-甲基-对-酪氨酸进行预处理后,可卡因也可以提高多巴胺的水平,而α-甲基-对-酪氨酸消耗掉了容易释放的多巴胺。这表明可卡因通过动员含有多巴胺的突触小泡的储备池来增强多巴胺的释放。为了检验该假设,我们检查了突触小泡储备池受损的突触素I / II / III三联敲除小鼠的电诱发多巴胺释放。突触蛋白的敲除极大地降低了可卡因在长时间的刺激序列中或在新合成的池耗尽后增强多巴胺释放的能力。因此,我们得出结论,可卡因可增强多巴胺的释放,并通过动员含多巴胺的突触小泡的突触素依赖性储备库来实现。这种增强多巴胺胞外释放的能力对于可卡因的心理刺激作用可能很重要。

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