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Monitoring the effect of therapeutic doses of gamma irradiation on medulloblastoma by Raman spectroscopy

机译:拉曼光谱法监测治疗剂量γ辐射治疗γ辐射的影响

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Surgery, radiation, chemotherapy and immunotherapy are the most common brain cancer treatment options determined by the type and the stage of the illness. Monitoring the effect of radiotherapy becomes as important as a cancer diagnosis. Within this context, the main goal of this study was to provide new insights into the monitoring of biochemical changes of medulloblastoma exposed to gamma irradiation with a low dose of 2 and 10 Gy using a label-free method (Raman microspectroscopy) and compare it with labelled techniques (metabolic activity and oxidative stress assays). Results showed that Raman spectroscopy can correctly classify the response of medulloblastoma cells to gamma irradiation with a specificity and sensitivity of 80.35% and 79.65%, respectively. Collected Raman spectra display measurable radiobiological effects that correlated with the dose of 2 and 10 Gy according to conducted multivariate statistical analysis. A CellROX Orange fluorescence probe was able to monitor the oxidative stress in live medulloblastoma cells post-irradiation.
机译:手术,辐射,化疗和免疫疗法是由疾病类型和阶段确定的最常见的脑癌治疗方案。监测放射疗法的效果变得与癌症诊断一样重要。在这方面,本研究的主要目标是提供新的见解,以利用无标签的方法(拉曼微穴位)将其暴露于γ和10Gy的γ辐射暴露于γ辐射的生物化学变化的新见解。标记技术(代谢活性和氧化应激测定)。结果表明,拉曼光谱可以正确地将Medulloblastoma细胞对γ辐射的响应分别具有80.35%和79.65%的特异性和敏感性。收集的拉曼光谱显示可测量的放射性效应,其根据进行的多变量统计分析与2和10GY的剂量相关。 Cellrox橙色荧光探针能够在照射后测量活蛋白酶母细胞瘤细胞中的氧化应激。

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