黑质纹状体回路中多巴胺合成的增加增加了多巴胺的阶段性释放并改变了背纹状体的连接:对精神分裂症的影响。

IF 3 Q2 PSYCHIATRY
Sunil Srivastav, Xiaoying Cui, Roger Bitencourt Varela, James P Kesby, Darryl Eyles
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引用次数: 0

摘要

据报道,精神分裂症患者最严重的神经化学异常之一是多巴胺(DA)合成和释放增加,仅限于背侧纹状体(DS)。这种超功能性与精神病症状密切相关,并在后来转变为精神分裂症的患者中发展。为了了解这种渐进性神经生物学对大脑功能的影响,我们在大鼠身上开发了一种模型,称为EDiPs(原发性精神分裂症中的增强型多巴胺)。EDiPs模型的特点是在青春期和成年期,病毒介导的背纹状体(DS)DA合成能力增加。该方案导致行为和神经化学的逐渐变化。我们在这项研究中的目的是探索DA合成能力的增加是否会改变DA释放和DS连接的生理学。使用快速扫描循环伏安法评估DA释放,我们发现在EDiPs大鼠的DS中,诱发/阶段性DA释放增加,而DA的紧张/背景水平不受影响。使用定量免疫组织化学方法来量化DS突触结构,我们发现DA释放位点的突触前标记物(Bassoon)在TH轴突内升高,特别是在DS内,与该区域阶段性DA释放的增加一致。除了DA系统的变化外,我们还发现EDiPs DS中囊泡谷氨酸转运体1(VGluT1)突触的密度增加,这表明皮层连接发生了变化。我们的数据可能被证明与理解DS功能对精神分裂症中DA合成摄取和释放的强劲和长期增加的长期影响有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Increasing dopamine synthesis in nigrostriatal circuits increases phasic dopamine release and alters dorsal striatal connectivity: implications for schizophrenia.

Increasing dopamine synthesis in nigrostriatal circuits increases phasic dopamine release and alters dorsal striatal connectivity: implications for schizophrenia.

Increasing dopamine synthesis in nigrostriatal circuits increases phasic dopamine release and alters dorsal striatal connectivity: implications for schizophrenia.

Increasing dopamine synthesis in nigrostriatal circuits increases phasic dopamine release and alters dorsal striatal connectivity: implications for schizophrenia.

One of the most robust neurochemical abnormalities reported in patients with schizophrenia is an increase in dopamine (DA) synthesis and release, restricted to the dorsal striatum (DS). This hyper functionality is strongly associated with psychotic symptoms and progresses in those who later transition to schizophrenia. To understand the implications of this progressive neurobiology on brain function, we have developed a model in rats which we refer to as EDiPs (Enhanced Dopamine in Prodromal schizophrenia). The EDiPs model features a virally mediated increase in dorsal striatal (DS) DA synthesis capacity across puberty and into adulthood. This protocol leads to progressive changes in behaviour and neurochemistry. Our aim in this study was to explore if increased DA synthesis capacity alters the physiology of DA release and DS connectivity. Using fast scan cyclic voltammetry to assess DA release we show that evoked/phasic DA release is increased in the DS of EDiPs rats, whereas tonic/background levels of DA remain unaffected. Using quantitative immunohistochemistry methods to quantify DS synaptic architecture we show a presynaptic marker for DA release sites (Bassoon) was elevated within TH axons specifically within the DS, consistent with the increased phasic DA release in this region. Alongside changes in DA systems, we also show increased density of vesicular glutamate transporter 1 (VGluT1) synapses in the EDiPs DS suggesting changes in cortical connectivity. Our data may prove relevant in understanding the long-term implications for DS function in response to the robust and prolonged increases in DA synthesis uptake and release reported in schizophrenia.

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