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一种单分子评估 DMSO 对光和 γ 射线辐射以及冷冻诱导的 DNA 双链断裂的保护作用。

A single-molecule assessment of the protective effect of DMSO against DNA double-strand breaks induced by photo-and γ-ray-irradiation, and freezing.

机构信息

Faculty of Life and Medical Sciences, Doshisha University, Kyoto, 610-0321, Japan.

Research Organization of Science and Technology, Ritsumeikan University, Shiga, 525-8577, Japan.

出版信息

Sci Rep. 2017 Aug 17;7(1):8557. doi: 10.1038/s41598-017-08894-y.

Abstract

Dimethyl sulfoxide (DMSO) is widely used as a cryoprotectant for organs, tissues, and cell suspension in storage. In addition, DMSO is known to be a useful free radical scavenger and a radio-protectant. To date, many in vitro assays using cultured cells have been performed for analysing the protective effect of DMSO against genomic DNA damage; however, currently it has been rather difficult to detect DNA double strand breaks (DSBs) in a quantitative manner. In the present study, we aimed to observe the extent of DNA damage by use of single molecular observation with a fluorescence microscope to evaluate DSBs induced by photo- and γ-ray-irradiation, or freeze/thawing in variable concentrations of DMSO. As a result, we found that 2% DMSO conferred the maximum protective effect against all of the injury sources tested, and these effects were maintained at higher concentrations. Further, DMSO showed a significantly higher protective effect against freezing-induced damage than against photo- and γ-ray-irradiation-induced damage. Our study provides significant data for the optimization of DNA cryopreservation with DMSO, as well as for the usage of DNA as the protective agent against the injuries caused by active oxygen and radiations.

摘要

二甲基亚砜(DMSO)广泛用作器官、组织和细胞悬液储存的冷冻保护剂。此外,DMSO 已知是一种有用的自由基清除剂和放射保护剂。迄今为止,已经进行了许多使用培养细胞的体外分析,以研究 DMSO 对基因组 DNA 损伤的保护作用;然而,目前以定量方式检测 DNA 双链断裂(DSBs)相当困难。在本研究中,我们旨在通过荧光显微镜进行单分子观察来观察 DNA 损伤的程度,以评估光和γ射线辐射或不同浓度 DMSO 冻融引起的 DSB。结果发现,2% DMSO 对所有测试的损伤源均具有最大的保护作用,并且在较高浓度下仍保持这种作用。此外,DMSO 对冷冻引起的损伤的保护作用明显高于对光和γ射线辐射引起的损伤。我们的研究为优化 DMSO 介导的 DNA 冷冻保存提供了重要数据,也为将 DNA 用作对抗活性氧和辐射引起的损伤的保护剂提供了重要数据。

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