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Simultaneous in situ profiling of DNA lesion endpoints based on image cytometry and a single cell database approach

机译:基于图像流式细胞仪和单细胞数据库方法同时对DNA损伤终点进行原位分析

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Analyzing the integrity of DNA is one of the most frequent used endpoints for risk assessment of chemical and physical agents. In the framework of a radiobiological space experiment, this work aimed at having (1) a histochemical tool for the in situ assessment of DNA damage in as long as 20 days old fixed cell cultures, (2) a comprehensive tool for the quantification of different types of DNA lesions, and (3) a methodology of sampling thousands of nuclei based on confocal microscopy, automated stage scanning and digital image processing. For this purpose several fixatives and permeabilization techniques were tested together with the combinatorial use of terminal dUTP transf erase-mediated nick end-labeling (TUNEL) and the DNA polymerase I mediated in situ nick translation. These biochemical tools are useful for scoring DNA single and double breaks, and oxidative lesions. Ltk{sup}- cells were exposed either to hydrogen peroxide or heavy ion beam irradiation. Combination of paraformaldehyde fixation, sodium citrate permeabilization and heat gave the best staining results. A three-channel fluorescence methodology was established including a DNA counter stain for nucleus identification and normalization of DNA content. Communication between confocal imaging software, image analysis software and a relational database proved to be pivotal for a semi-automated high-end single cell analysis and storage of images. In this way, DNA damage data per nucleus can be traced back to the original image. As much as 2500 cells could be analyzed in situ within a day and correlations drawn between different DNA lesion endpoints.
机译:分析DNA的完整性是化学试剂和物理试剂风险评估最常用的终点之一。在放射生物学空间实验的框架内,这项工作旨在(1)在长达20天的固定细胞培养中,用于就地评估DNA损伤的组织化学工具,(2)用于定量分析不同基因的综合工具。 DNA损伤的类型,以及(3)基于共聚焦显微镜,自动台扫描和数字图像处理的数千个核采样方法。为此目的,测试了几种固定剂和通透性技术,以及末端dUTP透射擦除介导的缺口末端标记(TUNEL)和DNA聚合酶I介导的原位缺口翻译的组合使用。这些生化工具可用于对DNA的单断裂和双断裂以及氧化损伤进行评分。 Ltk {sup}-细胞暴露于过氧化氢或重离子束辐照下。多聚甲醛固定,柠檬酸钠通透性和加热相结合,染色效果最佳。建立了三通道荧光方法,包括用于核识别和DNA含量归一化的DNA反向染色剂。共焦成像软件,图像分析软件和关系数据库之间的通信被证明对于半自动化高端单细胞分析和图像存储至关重要。这样,每个细胞核的DNA损伤数据可以追溯到原始图像。一天之内可对多达2500个细胞进行原位分析,并绘制出不同DNA损伤终点之间的相关性。

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