首页> 美国卫生研究院文献>The Journal of Neuroscience >Prefrontal and Striatal Glutamate Differently Relate to Striatal Dopamine: Potential Regulatory Mechanisms of Striatal Presynaptic Dopamine Function?
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Prefrontal and Striatal Glutamate Differently Relate to Striatal Dopamine: Potential Regulatory Mechanisms of Striatal Presynaptic Dopamine Function?

机译:前额叶和纹状体谷氨酸与纹状体多巴胺的关系不同:纹状体突触前多巴胺功能的潜在调节机制?

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摘要

Theoretical and animal work has proposed that prefrontal cortex (PFC) glutamate inhibits dopaminergic inputs to the ventral striatum (VS) indirectly, whereas direct VS glutamatergic afferents have been suggested to enhance dopaminergic inputs to the VS. In the present study, we aimed to investigate relationships of glutamate and dopamine measures in prefrontostriatal circuitries of healthy humans. We hypothesized that PFC and VS glutamate, as well as their balance, are differently associated with VS dopamine. Glutamate concentrations in the left lateral PFC and left striatum were assessed using 3-Tesla proton magnetic resonance spectroscopy. Striatal presynaptic dopamine synthesis capacity was measured by fluorine-18-l-dihydroxyphenylalanine (F-18-FDOPA) positron emission tomography. First, a negative relationship was observed between glutamate concentrations in lateral PFC and VS dopamine synthesis capacity (n = 28). Second, a positive relationship was revealed between striatal glutamate and VS dopamine synthesis capacity (n = 26). Additionally, the intraindividual difference between PFC and striatal glutamate concentrations correlated negatively with VS dopamine synthesis capacity (n = 24). The present results indicate an involvement of a balance in PFC and striatal glutamate in the regulation of VS dopamine synthesis capacity. This notion points toward a potential mechanism how VS presynaptic dopamine levels are kept in a fine-tuned range. A disruption of this mechanism may account for alterations in striatal dopamine turnover as observed in mental diseases (e.g., in schizophrenia).>SIGNIFICANCE STATEMENT The present work demonstrates complementary relationships between prefrontal and striatal glutamate and ventral striatal presynaptic dopamine using human imaging measures: a negative correlation between prefrontal glutamate and presynaptic dopamine and a positive relationship between striatal glutamate and presynaptic dopamine are revealed. The results may reflect a regulatory role of prefrontal and striatal glutamate for ventral striatal presynaptic dopamine levels. Such glutamate–dopamine relationships improve our understanding of neurochemical interactions in prefrontostriatal circuits and have implications for the neurobiology of mental disease.
机译:理论和动物研究表明,前额叶皮层(PFC)谷氨酸间接抑制腹侧纹状体(VS)的多巴胺能输入,而直接VS谷氨酸能传入者已建议增强VS的多巴胺能输入。在本研究中,我们旨在调查健康人的前额窦循环中谷氨酸和多巴胺测量的关系。我们假设PFC和VS谷氨酸及其平衡与VS多巴胺不同。使用3-Tesla质子磁共振波谱仪评估左侧PFC和左侧纹状体中的谷氨酸盐浓度。纹状体突触前多巴胺的合成能力通过氟-18-1-二羟基苯丙氨酸(F-18-FDOPA)正电子发射断层显像法测量。首先,在侧面PFC中的谷氨酸浓度与VS多巴胺合成能力之间存在负相关关系(n = 28)。第二,纹状体谷氨酸与VS多巴胺合成能力之间呈正相关(n = 26)。此外,PFC和纹状体谷氨酸浓度之间的个体差异与VS多巴胺合成能力负相关(n = 24)。本结果表明PFC和纹状体谷氨酸的平衡参与VS多巴胺合成能力的调节。这个观点指出了一个潜在的机制,即如何将VS突触前多巴胺水平保持在微调的范围内。如在精神疾病(例如,精神分裂症)中观察到的,这种机制的破坏可能解释了纹状体多巴胺转换的变化。使用人体成像技术:前额叶谷氨酸和突触前多巴胺之间呈负相关,纹状体谷氨酸和突触前多巴胺之间呈正相关。结果可能反映前额叶和纹状体谷氨酸对腹侧纹状体突触前多巴胺水平的调节作用。谷氨酸-多巴胺的这种关系改善了我们对额窦前回路中神经化学相互作用的理解,并对精神疾病的神经生物学产生了影响。

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