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Compartment analysis of cerebral glucose metabolism and in vitro glucose-metabolizing enzyme activities in the rat brain.

机译:对大鼠大脑中脑葡萄糖代谢和体外葡萄糖代谢酶活性的区室分析。

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To clarify the relationship between cerebral glucose metabolic rate constants and glucose-metabolizing enzyme activities in the cerebral cortex, we evaluated the cerebral metabolic rate of glucose (CMRGlu), metabolic rate constants of [18F]-2-fluoro-2-deoxy-D-glucose (FDG) and related enzyme activities in the frontal cortex under normal and glucose metabolism-suppressed conditions. Applying a three-compartment four-parameter model, metabolic rate constants were obtained by dynamic positron emission tomography with FDG, and CMRGlu was calculated based on these rate constants. The glycolytic enzyme activities were determined by in vitro biochemical assay. Three days after ibotenic acid injection into the basal forebrain, CMRGlu was decreased in the ibotenic acid-treated frontal cortex as well as k3* (phosphorylation), while K1* (plasma to brain) showed no remarkable change. No significant reductions of the enzyme activities except for hexokinase activity were found in the frontal cortex. Regression analysis showed a significant positive correlation between k3* and the hexokinase activity. These results suggested that k3* in the compartment analysis reflects hexokinase activity.
机译:为了阐明大脑皮层中葡萄糖代谢速率常数与葡萄糖代谢酶活性之间的关系,我们评估了大脑葡萄糖代谢率(CMRGlu),[18F] -2-氟-2-脱氧-D代谢速率常数。正常和葡萄糖代谢受抑制的条件下额叶皮层中的葡萄糖(FDG)和相关酶活性。应用三室四参数模型,通过FDG动态正电子发射断层扫描获得代谢速率常数,并基于这些速率常数计算CMRGlu。通过体外生化测定确定糖酵解酶活性。 ibotenic acid注入基底前脑三天后,经ibotenic acid处理的额叶皮层以及k3 *(磷酸化)的CMRGlu降低,而K1 *(血浆至脑)则无明显变化。在额叶皮层中除己糖激酶活性外没有发现酶活性的显着降低。回归分析显示k3 *和己糖激酶活性之间存在显着的正相关。这些结果表明,区室分析中的k3 *反映了己糖激酶活性。

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