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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Stimulated dopamine overflow and alpha-synuclein expression in the nucleus accumbens core distinguish rats bred for differential ethanol preference.
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Stimulated dopamine overflow and alpha-synuclein expression in the nucleus accumbens core distinguish rats bred for differential ethanol preference.

机译:伏伏核核心中受刺激的多巴胺溢流和α-突触核蛋白表达可区分不同乙醇偏好的大鼠。

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摘要

The key neurochemical systems and structures involved in the predisposition to substance abuse and preference to ethanol (EtOH) are not known in detail but clearly dopamine (DA) is an important modulator of addiction. Recent data indicate that alpha-synuclein (alpha-syn), a pre-synaptic protein, plays a role in regulation of DA release from the pre-synaptic terminals in striatum and the expression of this protein is different after drug abuse or following abstinence. In the present work, we analysed stimulated DA overflow in the dorsal and ventral striatum in EtOH naive alko alchohol (AA) and alko non-alchohol (ANA) rats selected for more than 100 generations for their differential EtOH preference. In the same structures, we studied the expression of alpha-syn using western blotting. AA rats, in comparison with ANA rats, showed a marked reduction of stimulated peak DA overflow and higher levels of alpha-syn in the nucleus accumbens core. In the same structure, DA re-uptake was increased in AA rats in comparison with ANA rats. The effects of EtOH at low (0.1 g/kg) and higher (3 mg/kg) doses on DA overflow measured in the nucleus accumbens shell were similar in both lines. These results indicate that high expression of alpha-syn may contribute to the reduced DA overflow and the possible activation of re-uptake in the nucleus accumbens core of AA rats in comparison with ANA rats.
机译:尚不清楚药物易感性和对乙醇(EtOH)的易感性所涉及的关键神经化学系统和结构,但显然多巴胺(DA)是成瘾的重要调节剂。最新数据表明,突触前蛋白α-突触核蛋白(α-syn)在调节纹状体中突触前末端的DA释放中起一定作用,在滥用药物或禁酒后该蛋白的表达有所不同。在目前的工作中,我们分析了EtOH幼稚酒精(AA)和非酒精性(ANA)大鼠的EtOH差异性偏好,这些大鼠被选出100多个世代,刺激后背纹状体和腹侧纹状体溢流。在相同的结构中,我们使用蛋白质印迹研究了alpha-syn的表达。与ANA大鼠相比,AA大鼠表现出明显的刺激峰值DA溢出减少和伏伏核核心中较高水平的α-syn。在相同的结构中,与ANA大鼠相比,AA大鼠的DA再摄取增加了。在伏隔核壳中测得的低剂量(0.1 g / kg)和较高剂量(3 mg / kg)的EtOH对DA溢流的影响在这两行中相似。这些结果表明,与ANA大鼠相比,α-syn的高表达可能有助于减少DA溢出,并可能激活AA大鼠伏隔核核心的再摄取。

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