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闪光彗星试验

Flash-comet assay.

作者信息

Bivehed Erik, Hellman Björn

机构信息

Uppsala University, Department of Pharmaceutical Biosciences, Drug Safety and Toxicology, Uppsala, Sweden.

出版信息

MethodsX. 2020 Nov 27;7:101161. doi: 10.1016/j.mex.2020.101161. eCollection 2020.

Abstract

In the present paper, we present a substantially revised protocol of the widely used SCGE assay performed under alkaline conditions. In our updated version of the comet assay, which we call the Flash-comet, LiOH is used instead of NaOH during the unwinding and electrophoresis. This allows a higher voltage during the electrophoresis (5 V/cm instead of 0.7 V/cm), making it possible to reduce the unwinding time from 20 to 40 to 2.5 min, and the electrophoresis time from 10 to 20 to 1 min. Still, the Flash-comet was found to detect DNA strand breaks and alkali-labile sites with a higher degree of sensitivity than the conventional protocol in cells that had been exposed to HO or ionizing radiation. In order to prevent alkaline hydrolysis of DNA, the wash and lysis solutions have been modified in the Flash-comet protocol.•By using an alkaline LiOH-based medium, the Flash-comet allows for much shorter times for both unwinding and electrophoresis than the conventional comet assay without compromising the sensitivity.•The reduced run-times of the unwinding and electrophoresis steps in the Flash-comet should also reduce the risk of laboratory-induced alkaline hydrolysis of DNA when evaluating the potential DNA-damaging effects of different types of xenobiotics.

摘要

在本论文中,我们展示了一种对广泛使用的在碱性条件下进行的单细胞凝胶电泳(SCGE)试验方案的实质性修订。在我们更新后的彗星试验版本(我们称之为快速彗星试验)中,在解旋和电泳过程中使用氢氧化锂(LiOH)代替氢氧化钠(NaOH)。这使得电泳过程中能够使用更高的电压(5V/cm而不是0.7V/cm),从而有可能将解旋时间从20至40分钟减少到2.5分钟,电泳时间从10至20分钟减少到1分钟。尽管如此,在已暴露于过氧化氢(HO)或电离辐射的细胞中,发现快速彗星试验比传统方案能以更高的灵敏度检测DNA链断裂和碱不稳定位点。为了防止DNA的碱性水解,在快速彗星试验方案中对洗涤和裂解液进行了改良。•通过使用基于氢氧化锂的碱性介质,快速彗星试验在不影响灵敏度的情况下,与传统彗星试验相比,解旋和电泳时间都大大缩短。•在评估不同类型的外源性物质的潜在DNA损伤效应时,快速彗星试验中解旋和电泳步骤运行时间的减少也应降低实验室诱导的DNA碱性水解的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b2b/7718155/2eeb14d036de/fx1.jpg

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