首页> 美国卫生研究院文献>The Journal of Neuroscience >Amphetamine Distorts Stimulation-Dependent Dopamine Overflow: Effects on D2 Autoreceptors Transporters and Synaptic Vesicle Stores
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Amphetamine Distorts Stimulation-Dependent Dopamine Overflow: Effects on D2 Autoreceptors Transporters and Synaptic Vesicle Stores

机译:苯丙胺扭曲刺激依赖性多巴胺溢出:对D2自身受体转运蛋白和突触囊泡存储的影响。

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摘要

Amphetamine (AMPH) is known to raise extracellular dopamine (DA) levels by inducing stimulation-independent DA efflux via reverse transport through the DA transporter and by inhibiting DA re-uptake. In contrast, recent studies indicate that AMPH decreases stimulation-dependent vesicular DA release. One candidate mechanism for this effect is the AMPH-mediated redistribution of DA from vesicles to the cytosol. In addition, the inhibition of stimulation-dependent release may occur because of D2 autoreceptor activation by DA that is released via reverse transport. We used the D2 receptor antagonist sulpiride and mice lacking the D2 receptor to address this issue. To evaluate carefully AMPH effects on release and uptake, we recorded stimulated DA overflow in striatal slices by using continuous amperometry and cyclic voltammetry. Recordings were fit by a random walk simulation of DA diffusion, including uptake with Michaelis–Menten kinetics, that provided estimates of DA concentration and uptake parameters. AMPH (10 μm) promoted the overflow of synaptically released DA by decreasing the apparent affinity for DA uptake (Km increase from 0.8 to 32 μm). The amount of DA released per pulse, however, was decreased by 82%. This release inhibition was prevented partly by superfusion with sulpiride (47% inhibition) and was reduced in D2 mutant mice (23% inhibition). When D2 autoreceptor activation was minimal, the combined effects of AMPH on DA release and uptake resulted in an enhanced overflow of exocytically released DA. Such enhancement of stimulation-dependent DA overflow may occur under conditions of low D2 receptor activity or expression, for example as a result of AMPH sensitization.
机译:众所周知,苯丙胺(AMPH)通过经由DA转运蛋白的反向转运和抑制DA的再摄取,诱导非刺激的DA外排,从而提高细胞外多巴胺(DA)的水平。相反,最近的研究表明,AMPH减少了刺激依赖性水泡DA的释放。这种作用的一种候选机制是AMPH介导的DA从囊泡到细胞质的重新分布。此外,由于依赖DA的D2自受体激活(通过反向转运释放)可能会抑制刺激依赖性释放。我们使用了D2受体拮抗剂舒必利和缺少D2受体的小鼠来解决这个问题。为了仔细评估AMPH对释放和摄取的影响,我们通过使用连续安培法和循环伏安法记录了纹状体切片中受刺激的DA溢出。通过DA扩散的随机行走模拟(包括Michaelis-Menten动力学吸收)拟合记录,从而提供了DA浓度和吸收参数的估算值。 AMPH(10μm)通过减少对DA摄取的表观亲和力(Km从0.8增加到32μm)促进了突触释放的DA的溢出。但是,每个脉冲释放的DA量减少了82%。这种释放抑制部分通过与舒必利的超融合来预防(抑制率为47%),并在D2突变小鼠中得到了降低(抑制率为23%)。当D2自身受体的激活作用降到最低时,AMPH对DA释放和摄取的综合作用导致胞外释放DA的溢出增加。这种刺激依赖性DA溢出的增强可能在低D2受体活性或表达的条件下发生,例如作为AMPH敏化的结果。

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