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全脑辐射对大鼠局部脑葡萄糖利用的影响。

Effect of whole brain radiation on local cerebral glucose utilization in the rat.

作者信息

d'Avella D, Cicciarello R, Albiero F, Mesiti M, Gagliardi M E, Russi E, d'Aquino A, Princi P, d'Aquino S

机构信息

Neurosurgical Clinic, Faculty of Medicine, University of Messina, Italy.

出版信息

Neurosurgery. 1991 Apr;28(4):491-5. doi: 10.1097/00006123-199104000-00001.

Abstract

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 +/- 4 cGy/day, 5 days/week; total dose, 4000 cGy). Metabolic experiments were made 2 to 3 weeks after completion of the radiation exposure. In comparison with control and sham-irradiated animals, cerebral metabolic activity was diffusely decreased after irradiation. Statistically significant decreases in metabolic activity were observed in 13 of 27 brain regions studied. In general, the brain areas with the highest basal metabolic rates showed the greatest percentage of decrease in glucose utilization. The concept that radiation suppresses glucose utilization before any morphological change takes place in the cell structures was the basis of this study. Metabolic alterations after irradiation may explain the syndrome of early delayed deterioration observed in humans after whole-brain radiotherapy. These studies have applications to observations made with the [18F]-fluorodeoxyglucose method in conjunction with positron emission tomographic scans in patients receiving radiation therapy for intracranial malignancies. The data reported here also have potential clinical implications for the evaluation of a risk/benefit ratio for radiotherapy in patients with benign neurosurgical diseases or children undergoing prophylactic treatment of the central nervous system.

摘要

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(200±4cGy/天,每周5天;总剂量4000cGy)。在辐射暴露结束后2至3周进行代谢实验。与对照和假照射动物相比,照射后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。本研究的基础是这样一个概念,即辐射在细胞结构发生任何形态变化之前就抑制了葡萄糖利用。照射后的代谢改变可能解释了人类全脑放疗后观察到的早期延迟恶化综合征。这些研究适用于在接受颅内恶性肿瘤放射治疗的患者中,结合正电子发射断层扫描用[18F]-氟脱氧葡萄糖法进行的观察。本文报道的数据对于评估良性神经外科疾病患者或接受中枢神经系统预防性治疗的儿童放疗的风险/效益比也具有潜在的临床意义。

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