Schizophrenia Research Institute, Sydney, New South Wales, Australia.
Brain Res. 2011 May 4;1388:22-31. doi: 10.1016/j.brainres.2011.03.004. Epub 2011 Mar 31.
A balance between excitatory and inhibitory neurotransmission is important in normal brain function, and in schizophrenia a deficit in γ-aminobutyric acid (GABA)ergic inhibitory neurotransmission has been indicated by postmortem studies. We examined the ratio of excitatory to inhibitory vesicular neurotransmitter transporter mRNAs (VGluT1 to VGAT) and their ratio in the dorsolateral prefrontal cortex during normal human development and in people with schizophrenia and controls by quantitative RT-PCR. The ratio of VGluT1/VGAT increased gradually in development to reach a peak at school age (5-12 years), after which levels remained fairly constant into adulthood. The VGluT1 mRNA/VGAT mRNA ratio was unchanged in schizophrenia, as was the ratio of complexin 2 mRNA to complexin 1 mRNA (related to synaptic vesicle fusion in excitatory and inhibitory terminals, respectively). This suggests that the excitatory/inhibitory balance is attained prior to adolescence and is maintained across the rest of the life-span and also indicates that in schizophrenia this balance is not greatly disturbed.
兴奋和抑制性神经递质之间的平衡对于正常的大脑功能很重要,尸检研究表明,精神分裂症患者γ-氨基丁酸(GABA)能抑制性神经递质传递不足。我们通过定量 RT-PCR 检查了正常人类发育过程中以及精神分裂症患者和对照组的背外侧前额叶皮层中兴奋性囊泡神经递质转运体 mRNAs(VGluT1 到 VGAT)及其比值。VGluT1/VGAT 的比值在发育过程中逐渐增加,在学龄期(5-12 岁)达到峰值,之后在成年期保持相当稳定。精神分裂症患者的 VGluT1 mRNA/VGAT mRNA 比值没有变化,复合蛋白 2 mRNA 与复合蛋白 1 mRNA 的比值也没有变化(分别与兴奋性和抑制性终末的突触囊泡融合有关)。这表明兴奋性/抑制性平衡在青春期前就已达到,并在整个生命周期内保持稳定,也表明精神分裂症患者的这种平衡并没有受到很大干扰。