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Evaluation of the efficacy of radiation-modifying compounds using γH2AX as a molecular marker of DNA double-strand breaks

机译:使用γH2AX作为DNA双链断裂的分子标记来评估辐射修饰化合物的功效

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摘要

Radiation therapy is a widely used therapeutic approach for cancer. To improve the efficacy of radiotherapy there is an intense interest in combining this modality with two broad classes of compounds, radiosensitizers and radioprotectors. These either enhance tumour-killing efficacy or mitigate damage to surrounding non-malignant tissue, respectively. Radiation exposure often results in the formation of DNA double-strand breaks, which are marked by the induction of H2AX phosphorylation to generate γH2AX. In addition to its essential role in DDR signalling and coordination of double-strand break repair, the ability to visualize and quantitate γH2AX foci using immunofluorescence microscopy techniques enables it to be exploited as an indicator of therapeutic efficacy in a range of cell types and tissues. This review will explore the emerging applicability of γH2AX as a marker for monitoring the effectiveness of radiation-modifying compounds.
机译:放射疗法是广泛使用的癌症治疗方法。为了提高放射疗法的功效,将这种方式与两大类化合物(放射增敏剂和放射防护剂)结合使用引起了极大的兴趣。这些分别增强了杀伤肿瘤的功效或减轻了对周围非恶性组织的损害。辐射暴露通常会导致DNA双链断裂的形成,其特征是诱导H2AX磷酸化以生成γH2AX。除了在DDR信号传导和双链断裂修复的协调中发挥重要作用外,使用免疫荧光显微镜技术可视化和定量γH2AX灶的能力还使其能够用作多种细胞类型和组织中治疗功效的指标。这篇综述将探讨γH2AX作为监测辐射修饰化合物有效性的标志物的新兴应用。

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