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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Differences in basal and induced DNA single-strand breaks between human peripheral monocytes and lymphocytes.
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Differences in basal and induced DNA single-strand breaks between human peripheral monocytes and lymphocytes.

机译:人类外周单核细胞和淋巴细胞之间的基础DNA和诱导DNA单链断裂的差异。

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摘要

The aim of this study was to compare the susceptibility of peripheral monocytes and lymphocytes to oxidant-induced DNA single-strand breaks (SSB). DNA damage was assessed by the alkaline single-cell gel electrophoresis (SCGE) assay. Total peripheral mononuclear leukocytes (PML), PML enriched in lymphocytes and PML enriched in monocytes were used. The basal rate of SSB was measured after in vitro incubation of cells for 1 h in phosphate-buffered saline, and the induced rate after incubation in 10 microM or 50 microM H2O2. Incubation was performed at 4 degrees C to limit the possible influence of DNA repair. Lymphocyte-enriched PML were obtained after adhesion of the monocytes to tissue-culture treated plastic, and monocyte-enriched PML by removal of monocytes from the plastic through trypsin. In all samples, cell differentiation was performed using an immunofluorescence technique with antibodies against T- and B-lymphocytes and cytospin preparations. The rate of SSB was determined by visual scoring according to 6 predefined categories of DNA damage and was expressed as mean score (range 0-500) per 100 cells. There was a linear relationship between the percentage of lymphocytes in the samples and the basal rate of SSB (p < 0.001, slope 0.67 score units per %). The same was true for induced DNA damage after incubation in 10 microM H2O2 (p < 0.001, slope 3.80 score units per %) or 50 microM H2O2 (p < 0.001, slope 3.22 score units per %). These regression analyses revealed a 2.9-fold greater rate of basal DNA damage in lymphocytes compared to monocytes and an 11.3-fold greater rate for the damage induced by 10 microM H2O2. We conclude that there are marked differences in the rate of basal and induced SSB between lymphocytes and monocytes, suggesting differences in antioxidant capacity between the two cell populations. These findings indicate that the assessment of SSB for biomonitoring and genotoxicity testing using PML has to take into account possible changes in cellular composition.
机译:这项研究的目的是比较外周单核细胞和淋巴细胞对氧化剂诱导的DNA单链断裂(SSB)的敏感性。通过碱性单细胞凝胶电泳(SCGE)分析评估DNA损伤。使用总外周单核白细胞(PML),富含淋巴细胞的PML和富含单核细胞的PML。在磷酸盐缓冲液中将细胞体外温育1小时后,测量SSB的基础速率,并在10 microM或50 microM H2O2中温育后诱导的速率。在4℃下进行孵育以限制DNA修复的可能影响。将单核细胞粘附到组织培养处理过的塑料上后,可得到富含淋巴细胞的PML,然后通过胰蛋白酶从塑料中除去单核细胞,从而获得了富含单核细胞的PML。在所有样品中,使用免疫荧光技术对T淋巴细胞和B淋巴细胞以及cytospin制剂的抗体进行细胞分化。通过根据6种预定义的DNA损伤类别通过视觉评分来确定SSB的发生率,并表示为每100个细胞的平均得分(范围为0-500)。样本中淋巴细胞的百分比与SSB的基础率之间存在线性关系(p <0.001,斜率0.67评分单位/%)。在10 microM H2O2(p <0.001,斜率3.80分数单位/%)或50 microM H2O2(p <0.001,斜率3.22分数单位/%)中孵育后诱导的DNA损伤也是如此。这些回归分析表明,与单核细胞相比,淋巴细胞的基础DNA损伤率高2.9倍,而由10 microM H2O2诱导的损伤率则高11.3倍。我们得出的结论是,淋巴细胞和单核细胞之间的基础和诱导SSB的速率存在明显差异,表明这两个细胞群体之间的抗氧化能力存在差异。这些发现表明,对于使用PML进行生物监测和遗传毒性测试的SSB评估必须考虑到细胞组成的可能变化。

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