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Rat sensorimotor cortex tolerance to parallel transections induced by synchrotron-generated X-ray microbeams

机译:同步加速器产生的X射线微束诱导的大鼠平行横切对感觉运动皮层的耐受性

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摘要

Microbeam radiation therapy is a novel preclinical technique, which uses synchrotron-generated X-rays for the treatment of brain tumours and drug-resistant epilepsies. In order to safely translate this approach to humans, a more in-depth knowledge of the long-term radiobiology of microbeams in healthy tissues is required. We report here the result of the characterization of the rat sensorimotor cortex tolerance to microradiosurgical parallel transections. Healthy adult male Wistar rats underwent irradiation with arrays of parallel microbeams. Beam thickness, spacing and incident dose were 100 or 600 µm, 400 or 1200 µm and 360 or 150 Gy, respectively. Motor performance was carried over a 3-month period. Three months after irradiation rats were sacrificed to evaluate the effects of irradiation on brain tissues by histology and immunohistochemistry. Microbeam irradiation of sensorimotor cortex did not affect weight gain and motor performance. No gross signs of paralysis or paresis were also observed. The cortical architecture was not altered, despite the presence of cell death along the irradiation path. Reactive gliosis was evident in the microbeam path of rats irradiated with 150 Gy, whereas no increase was observed in rats irradiated with 360 Gy.
机译:微束放射疗法是一种新的临床前技术,它使用同步加速器产生的X射线治疗脑部肿瘤和耐药性癫痫。为了将这种方法安全地翻译给人类,需要对健康组织中的微束的长期放射生物学有更深入的了解。我们在这里报告的大鼠感觉运动皮层耐受微放射外科平行横断面的表征结果。健康的成年雄性Wistar大鼠接受了一系列平行微束的辐照。光束厚度,间距和入射剂量分别为100或600μm,400或1200μm和360或150μGy。运动表现持续3个月。辐照后三个月,处死大鼠以通过组织学和免疫组织化学评估辐照对脑组织的影响。感觉运动皮层的微束照射不影响体重增加和运动表现。也没有观察到麻痹或轻瘫的大体征。尽管沿照射路径存在细胞死亡,但皮质结构没有改变。在用150yGy辐照的大鼠的微束路径中明显出现了反应性胶质增生,而在用360 Gy辐照的大鼠中未观察到反应性胶质增高。

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