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An Alternative Mechanism for Radioprotection by Dimethyl Sulfoxide; Possible Facilitation of DNA Double-strand Break Repair

机译:二甲基亚砜进行辐射防护的另一种机制; DNA双链断裂修复的可能促进

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摘要

The radioprotective effects of dimethyl sulfoxide (DMSO) have been known for many years, and the suppression of hydroxyl (OH) radicals induced by ionizing radiation has been thought to be the main cause of this effect. However, the DMSO concentration used was very high, and might be toxic, in earlier studies. In the present study, we administered a lower, non-toxic concentration (0.5%, i.e., 64 mM) of DMSO before irradiation and examined its radioprotective effects. Colony formation assay and micronucleus assay showed significant radioprotective effects in CHO, but not in xrs5, which is defective in the repair function of DNA double-strand breaks. The levels of phosphorylated H2AX and the formation of 53BP1 foci 15 minutes after irradiation, which might reflect initial DNA double-strand breaks, in DMSO-treated CHO cells were similar to those in non-treated cells, suggesting that the radioprotective effects were not attributable to the suppression of general indirect action in the lower concentration of DMSO. On the other hand, 2 hours after irradiation, the average number of 53BP1 foci, which might reflect residual DNA double-strand breaks, was significantly decreased in DMSO-treated CHO cells compared to non-treated cells. The results indicated that low concentration of DMSO exerts radioprotective effects through the facilitation of DNA double-strand break repair rather than through the suppression of indirect action.
机译:二甲基亚砜(DMSO)的辐射防护作用已为人所知,多年来,抑制由电离辐射引起的羟基(OH)自由基被认为是造成这种作用的主要原因。但是,在较早的研究中,所用的DMSO浓度很高,并且可能是有毒的。在本研究中,我们在辐照前施用了较低的无毒浓度(0.5%,即64 mM)DMSO,并检查了其放射防护作用。菌落形成试验和微核试验在CHO中显示出显着的放射防护作用,而在xrs5中则没有,这在DNA双链断裂的修复功能上是有缺陷的。在DMSO处理的CHO细胞中,辐照后15分钟的磷酸化H2AX水平和53BP1灶的形成可能反映了最初的DNA双链断裂,这与未处理的细胞相似,这表明其辐射防护作用不可归因在较低浓度的DMSO中抑制一般的间接作用。另一方面,与未处理的细胞相比,在DMSO处理的CHO细胞中,照射后2小时,可能反映残留的DNA双链断裂的53BP1病灶的平均数量显着降低。结果表明,低浓度的DMSO通过促进DNA双链断裂修复而不是通过抑制间接作用发挥了辐射防护作用。

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