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Systemic Neurochemical Alterations in Schizophrenic Brain: Glutamate Metabolism in Focus

机译:精神分裂症脑的系统性神经化学变化:谷氨酸代谢重点。

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摘要

We have used a systemic approach to establish a relationship between enzyme measures of glial glutamate and energy metabolism (glutamine synthetase and glutamine synthetase-like protein, glutamate dehydrogenase isoenzymes, brain isoform creatine phosphokinase) and two major glial proteins (glial fibrillary acidic protein and myelin basic protein) in autopsied brain samples taken from patients with schizophrenia (SCH) and mentally healthy subjects (23 and 22 cases, respectively). These biochemical parameters were measured in tissue extracts in three brain areas (prefrontal cortex, caudate nucleus, and cerebellum). Significant differences in the level of at least one of the glutamate metabolizing enzymes were observed between two studied groups in all studied brain areas. Different patterns of correlative links between the biochemical parameters were found in healthy and schizophrenic brains. These findings give a new perspective to our understanding of the impaired regulation of enzyme levels in the brain in SCH.
机译:我们已经使用系统的方法建立了神经胶质谷氨酸酶测量值与能量代谢(谷氨酰胺合成酶和谷氨酰胺合成酶样蛋白,谷氨酸脱氢酶同工酶,脑亚型肌酸磷酸激酶)之间的关系以及两种主要神经胶质蛋白(神经胶质纤维酸性蛋白和髓磷脂)精神分裂症患者(SCH)和精神健康患者的尸体解剖脑样本中的碱性蛋白(分别为23和22例)。这些生化参数是在三个大脑区域(额叶前皮层,尾状核和小脑)的组织提取物中测量的。在所有研究的大脑区域,两个研究组之间观察到至少一种谷氨酸代谢酶水平的显着差异。在健康和精神分裂症的大脑中发现了生化参数之间相关链接的不同模式。这些发现为我们对SCH中大脑中酶水平调节受损的理解提供了新的视角。

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