首页> 美国卫生研究院文献>The Journal of Neuroscience >Systematic Regional Variations of GABA Glutamine and Glutamate Concentrations Follow Receptor Fingerprints of Human Cingulate Cortex
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Systematic Regional Variations of GABA Glutamine and Glutamate Concentrations Follow Receptor Fingerprints of Human Cingulate Cortex

机译:GABA谷氨酰胺和谷氨酸盐浓度的系统区域变化遵循人类扣带皮层的受体指纹图谱。

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摘要

Magnetic resonance spectroscopy (MRS) of glutamatergic or GABAergic measures in anterior cingulate cortex (ACC) was found altered in psychiatric disorders and predictive of interindividual variations of functional responses in healthy populations. Several ACC subregions have been parcellated into receptor-architectonically different portions with heterogeneous fingerprints for excitatory and inhibitory receptors. Similarly, these subregions overlap with functionally distinct regions showing opposed signal changes toward stimulation or resting conditions. We therefore investigated whether receptor-architectonical and functional segregation of the cingulate cortex in humans was also reflected in its local concentrations of glutamate (Glu), glutamine (Gln), and GABA.To accomplish a multiregion estimation of all three metabolites in one robust and reliable session, we used an optimized 7T-stimulated echo-acquisition mode method with variable-rate selective excitation pulses. Our results demonstrated that, ensuring high data retest reliability, four cingulate subregions discerning e.g., pregenual ACC (pgACC) from anterior mid-cingulate cortex showed different metabolite concentrations and ratios reflective of regionally specific inhibition/excitation balance. These findings could be controlled for potential influences of local gray matter variations or MRS voxel-placement deviations. Pregenual ACC was found to have significantly higher GABA and Glu concentrations than other regions. This pattern was not paralleled by Gln concentrations, which for both absolute and relative values showed a rostrocaudal gradient with highest values in pgACC. Increased excitatory Glu and inhibitory GABA in pgACC were shown to follow a regional segregation agreeing with recently shown receptor-architectonic GABAB receptor distribution in ACC, whereas Gln distribution followed a pattern of AMPA receptors.
机译:发现前扣带回皮质(ACC)中的谷氨酸能或GABA能测量的磁共振波谱(MRS)在精神疾病中发生了变化,并预测了健康人群中功能反应的个体差异。几个ACC子区域已被分成具有不同结构的兴奋性和抑制性受体指纹的受体-结构不同部分。类似地,这些子区域与功能上不同的区域重叠,显示出相反的信号朝刺激或静止状态变化。因此,我们调查了人类扣带回皮层的受体-结构和功能分离是否也反映在其谷氨酸(Glu),谷氨酰胺(Gln)和GABA的局部浓度中。在可靠的会话中,我们使用了具有可变速率选择性激励脉冲的优化的7T激励回波获取模式方法。我们的结果表明,为确保高数据重新测试可靠性,从前扣带回皮层中识别出例如前生ACC(pgACC)的四个扣带子区域显示出不同的代谢物浓度和比率,反映了区域特定的抑制/激发平衡。对于局部灰质变化或MRS体素放置偏差的潜在影响,可以控制这些发现。发现与其他地区相比,出生前ACC的GABA和Glu浓度明显更高。这种模式与Gln浓度不平行,Gln浓度的绝对值和相对值均显示了pgACC中具有最高值的杆状尾骨梯度。 pgACC中兴奋性Glu和抑制性GABA的增加显示出区域隔离,这与最近显示的ACC中受体-建筑GABAB受体分布一致,而Gln分布遵循AMPA受体模式。

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