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Effect of whole-brain irradiation on the specific brain regions in a rat model: Metabolic and histopathological changes

机译:全脑照射对大鼠特异性脑区的影响:代谢和组织病理学变化

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摘要

Effect of ionizing radiation on the brain affects neuronal, glial, and endothelial cell population and lead to significant morphological, metabolic, and functional deficits. In the present study we investigated a dose and time-dependent correlation between radiation-induced metabolic and histopathological changes. Adult male Wistar rats received a total dose of 35 Gy delivered in 7 fractions (dose 5 Gy per fraction) once per week in the same weekday during 7 consecutive weeks. Proton magnetic resonance spectroscopy (H-1 MRS), histochemistry, immuno-histochemistry and confocal microscopy were used to determine whether radiation-induced alteration of the brain metabolites correlates with appropriate histopathological changes of neurogenesis and glial cell response in 2 neurogenic regions: the hippocampal dentate gyrus (DG) and the subventricular zone-olfactory bulb axis (SVZ-OB axis). Evaluation of the brain metabolites 18-19 weeks after irradiation performed by H-1 MRS revealed a significant decrease in the total Nacetylaspartate to total creatine (tNAA/tCr) ratio in the striatum and OB. A significant decline of gammaaminobutyric acid to tCr (GABA/tCr) ratio was seen in the OB and hippocampus. MR revealed absence of gross inflammatory or necrotic lesions in these regions. Image analysis of the brain sections 18-21 weeks after the exposure showed a radiation-induced increase of neurodegeneration, inhibition of neurogenesis and strong resemblance to the reactive astrogliosis. Results showed that fractionated whole-brain irradiation led to the changes in neurotransmission and to the loss of neuronal viability in vivo. Metabolic changes were closely associated with histopathological findings, i.e. initiation of neuronal cell death, inhibition of neurogenesis and strong response of astrocytes indicated development of late radiation induced changes. (C) 2017 Elsevier B.V. All rights reserved.
机译:电离辐射对脑的影响影响神经元,胶质和内皮细胞群,导致显着的形态学,代谢和功能缺陷。在本研究中,我们研究了辐射诱导的代谢和组织病理学变化之间的剂量和时间依赖性相关性。成年雄性Wistar大鼠在连续7周内每周每周一次,每周递送35米的总剂量为35米,每周每周一次,每周一次。质子磁共振光谱(H-1mRS),组织化学,免疫组织化学和共聚焦显微镜检查是否确定脑代谢物的辐射诱导的改变与2神经发生区域中神经发生和神经发育的适当组织病理学变化相关:海马齿状回物(DG)和子腔内 - 嗅球灯泡轴(SVZ-OB轴)。通过H-1 MRS进行的照射后18-19周评估脑代谢物18-19周显示出总甲丙基己酸盐的显着降低至纹状体中的总肌酸(TNAA / TCR)比例。在OB和海马中看到γaminObuticAcid对TCR(GABA / TCR)比的显着下降。 MR揭示了这些地区中缺乏炎症或坏死病变。暴露后18-21周的图像分析显示出辐射诱导的神经变性增加,抑制神经发生和对活性十分病的强烈相似之处。结果表明,分馏的全脑照射导致神经递质的变化和体内神经元活力的丧失。代谢变化与组织病理学发现密切相关,即神经元细胞死亡,抑制神经发生的抑制和星形胶质细胞的强烈反应表明晚期辐射诱导变化的发展。 (c)2017 Elsevier B.v.保留所有权利。

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