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Use of a microscope stage-mounted Nickel-63 microirradiator for real-time observation of the DNA double-strand break response

机译:使用显微镜载物台上的Nickel-63微辐照器实时观察DNA双链断裂反应

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摘要

Eukaryotic cells begin to assemble discrete, nucleoplasmic repair foci within seconds after the onset of exposure to ionizing radiation. Real-time imaging of this assembly has the potential to further our understanding of the effects of medical and environmental radiation exposure. Here, we describe a microirradiation system for targeted delivery of ionizing radiation to individual cells without the need for specialized facilities. The system consists of a 25-micron diameter electroplated Nickel-63 electrode, enveloped in a glass capillary and mounted in a micromanipulator. Because of the low energy of the beta radiation and the minute total amount of isotope present on the tip, the device can be safely handled with minimum precautions. We demonstrate the use of this system for tracking assembly of individual repair foci in real time in live U2OS human osteosarcoma cells. Results indicate that there is a subset of foci that appear and disappear rapidly, before a plateau level is reached ∼30 min post-exposure. This subset of foci would not have been evident without real-time observation. The development of a microirradiation system that is compatible with a standard biomedical laboratory expands the potential for real-time investigation of the biological effects of ionizing radiation.
机译:真核细胞在开始暴露于电离辐射后的几秒钟内开始组装离散的核质修复灶。该组件的实时成像有可能进一步加深我们对医疗和环境辐射暴露的影响的了解。在这里,我们描述了一种微辐照系统,可在不需要专门设施的情况下将电离辐射定向输送到单个细胞。该系统由直径为25微米的电镀镍63电极组成,该电极被包裹在玻璃毛细管中并安装在微操纵器中。由于β射线辐射的能量较低,并且尖端上存在的同位素总量很小,因此可以以最少的预防措施安全地操作该设备。我们演示了使用此系统实时跟踪活U2OS人骨肉瘤细胞中单个修复灶的组装。结果表明,在接触后约30分钟达到平稳水平之前,有一小部分病灶迅速出现和消失。如果没有实时观察,这部分病灶将不明显。与标准生物医学实验室兼容的微辐照系统的开发扩展了对电离辐射的生物学效应进行实时研究的潜力。

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