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用于分析细胞中DNA损伤修复的“彗星试验”的优化与标准化

Optimization and standardization of the "comet assay" for analyzing the repair of DNA damage in cells.

作者信息

Bauch T, Böcker W, Mallek U, Müller W U, Streffer C

机构信息

Institut für Medizinische Strahlenbiologie, Universitätsklinikum Essen, Germany.

出版信息

Strahlenther Onkol. 1999 Jul;175(7):333-40. doi: 10.1007/s000660050020.

Abstract

BACKGROUND

The "comet assay" has become an interesting and a very useful tool for the analysis of the induction and amount of DNA damage in single cells thus offering the opportunity to measure the effectiveness of DNA repair. On the basis of the Ostling and Johanson protocol we have developed a modified method with increased sensitivity and high reproducibility.

MATERIAL AND METHODS

Human tumor cells or isolated human peripheral blood lymphocytes were analyzed in the experiments. The amount of DNA damage and the effectiveness of DNA repair was measured after X-irradiation using the "comet assay" technique.

RESULTS

In this presentation the influences of different methodological factors like agarose concentration, buffer pH, electrophoresis time, electric field strength on the applicability of the "comet assay" are described in detail and optimum conditions for "comet assay" experiments have been evaluated. Additionally the authors will show a comparison of different fluorescent DNA dyes pointing out their advantages or disadvantages for "comet" analysis. The usefulness of this technique and its capabilities are exemplified by showing DNA repair kinetics of human lymphocytes of different healthy or radiosensitive donors after in-vitro irradiation with 2 Gy X-rays.

CONCLUSIONS

This paper presents data on the optimization and standardization of the original "comet assay" leading to an extremely fast and practicable protocol in the field of single cell gel electrophoresis. After irradiation with 0.1 Gy an increase in the amount of DNA damage can be measured with high statistical significance and the DNA repair capacity of individual cells after X-ray doses of 2 Gy can be analyzed with high reproducibility. The results comparing DNA repair capacities of different donors point out that the "comet assay" may have the potential for the estimation of individual radiosensitivity.

摘要

背景

“彗星试验”已成为分析单细胞中DNA损伤的诱导情况及损伤量的一项有趣且非常有用的工具,从而为测量DNA修复的有效性提供了机会。基于奥斯特林和约翰松的实验方案,我们开发了一种灵敏度更高、重现性更好的改良方法。

材料与方法

实验中分析了人类肿瘤细胞或分离出的人类外周血淋巴细胞。使用“彗星试验”技术在X射线照射后测量DNA损伤量及DNA修复的有效性。

结果

在本报告中,详细描述了不同方法学因素(如琼脂糖浓度、缓冲液pH值、电泳时间、电场强度)对“彗星试验”适用性的影响,并评估了“彗星试验”实验的最佳条件。此外,作者还将展示不同荧光DNA染料的比较情况,指出它们在“彗星”分析中的优缺点。通过展示不同健康或放射敏感供体的人类淋巴细胞在体外接受2 Gy X射线照射后的DNA修复动力学,例证了该技术的实用性及其能力。

结论

本文提供了有关原始“彗星试验”优化和标准化的数据,形成了单细胞凝胶电泳领域一种极其快速且实用的实验方案。照射0.1 Gy后,可高度统计学显著地测量到DNA损伤量的增加,并且能以高重现性分析2 Gy X射线剂量后单个细胞的DNA修复能力。比较不同供体DNA修复能力的结果指出,“彗星试验”可能具有估计个体放射敏感性的潜力。

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