D'Aquino S, Cicciarello R, D'Avella D, Mesiti M, Albiero F, Princi P, Gagliardi M E, Russi E, D'Aquino A
Institute of Oncology, Faculty of Medicine, University of Messina, Italy.
J Neurosurg Sci. 1990 Jul-Dec;34(3-4):215-8.
We assessed, by means of the [14C]-2-deoxy-D-glucose autoradiography method, the effect of whole-brain x-radiation on local cerebral glucose utilization in the rat brain. Animals were exposed to conventional fractionation (200 +/- cGy/day given 5 days a week) to a total dose of 4000 cGy. Metabolic experiments were made 2 weeks after completion of the radiation exposure. In comparison with control and sham-irradiated animals, cerebral metabolic activity was diffusely decreased following irradiation. Statistically significant decreases in metabolic activity were observed in 13 of 27 brain regions studied. In general, brain areas with the highest basal metabolic rates showed the greatest percentage drop of glucose utilization. Post-irradiation metabolic alterations possibly provide an explanation for the syndrome of early delayed deterioration observed in humans after whole-brain radiotherapy.
我们采用[14C]-2-脱氧-D-葡萄糖放射自显影法,评估了全脑X射线辐射对大鼠脑局部脑葡萄糖利用的影响。动物接受常规分割照射(每周5天,每天给予200±cGy),总剂量为4000 cGy。在辐射暴露完成后2周进行代谢实验。与对照和假照射动物相比,照射后大脑代谢活性普遍降低。在所研究的27个脑区中,有13个脑区的代谢活性出现了统计学上的显著下降。一般来说,基础代谢率最高的脑区葡萄糖利用率下降的百分比最大。照射后的代谢改变可能为人类全脑放疗后观察到的早期延迟性恶化综合征提供了解释。