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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Oxygen Enhancement Ratio in Radiation-Induced Initial DSBs by an Optimized Flow Cytometry-based Gamma-H2AX Analysis in A549 Human Cancer Cells
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Oxygen Enhancement Ratio in Radiation-Induced Initial DSBs by an Optimized Flow Cytometry-based Gamma-H2AX Analysis in A549 Human Cancer Cells

机译:A549人癌细胞中的优化流式细胞术γ-H2AX分析通过优化的流式细胞术γ-H2AX分析辐射诱导初始DSB的氧气增强比

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摘要

High-linear energy transfer (LET) heavy ions cause higher therapeutic effects than low-LET radiation due to lower dependency on oxygen concentration in tumor cell killing. The lethality after irradiation largely depends on DNA double-strand breaks (DSBs), however the detailed LET dependency for DSB induction under oxic and hypoxic conditions has not been reported. Therefore, we evaluated the oxygen enhancement ratio (OER) of heavy ion-induced DSB induction using a highly-optimized flow cytometrybased method of gamma-H2AX detection. Non-small cell lung cancer (NSCLC) A549 cells were exposed to X-ray, carbonion and iron-ion radiations under oxic or hypoxic condition. As a DSB marker, the c-H2AX signal was measured 1 h postirradiation and analyzed by flow cytometry. DSB slope values were calculated as DSB induction per Gy. Our method was able to detect high-LET radiation-induced DSBs even from clustered DNA damage sites. We also showed a decrease in OER value in an LET-dependent manner regardless of radiation type. In summary, we demonstrated a simple, quick and highly-optimized flow cytometry-based method of DSB analysis that detects DSBs induced by heavy-ion radiation for hypoxic and nonhypoxic cancer cells. Our study may provide a useful biological basis for heavy-ion radiotherapy. (C) 2017 by Radiation Research Society
机译:高线性能量转移(Let)重离子引起更高的治疗效果,而不是低使辐射引起的辐射由于肿瘤细胞杀伤中的氧浓度较低。辐照后的致死性主要取决于DNA双链断裂(DSB),但是尚未报告氧和缺氧条件下的DSB诱导依赖性。因此,我们使用高度优化的γ-H2AX检测方法评估了重离子诱导的重离子诱导的DSB感应的氧增强比(OER)。在氧体或缺氧条件下,非小细胞肺癌(NSCLC)A549细胞暴露于X射线,碳酮和铁离子辐射。作为DSB标记物,测量C-H2AX信号1小时的松下并通过流式细胞术分析。 DSB斜率值被计算为每GY的DSB感应。即使来自聚类DNA损伤部位,我们的方法能够检测高淋巴辐射诱导的DSB。无论辐射型如何,我们也以可谓的方式逐渐减少了oer值。总之,我们证明了一种简单,快速且高度优化的流式细胞术的DSB分析方法,可检测由缺氧和非肿瘤癌细胞的重离子辐射引起的DSB。我们的研究可以为重离子放射治疗提供有益的生物学基础。 (c)2017由辐射研究协会

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