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首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Induction and processing of complex DNA damage in human breast cancer cells MCF-7 and nonmalignant MCF-10A cells.
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Induction and processing of complex DNA damage in human breast cancer cells MCF-7 and nonmalignant MCF-10A cells.

机译:在人乳腺癌细胞MCF-7和非恶性MCF-10A细胞中诱导和处理复杂的DNA损伤。

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摘要

Oxidatively induced stress and DNA damage have been associated with various human pathophysiological conditions, including cancer and aging. Complex DNA damage such as double-strand breaks (DSBs) and non-DSB bistranded oxidatively induced clustered DNA lesions (OCDL) (two or more DNA lesions within a short DNA fragment of 1-10 bp on opposing DNA strands) are hypothesized to be repair-resistant lesions challenging the repair mechanisms of the cell. To evaluate the induction and processing of complex DNA damage in breast cancer cells exposed to radiotherapy-relevant gamma-ray doses, we measured single-strand breaks (SSBs), DSBs, and OCDL in MCF-7 and HCC1937 malignant cells as well as MCF-10A nonmalignant human breast cells. For the detection and measurement of SSBs, DSBs, and OCDL, we used the alkaline single-cell gel electrophoresis, gamma-H2AX assay, and an adaptation of pulsed-field gel electrophoresis with E. coli repair enzymes as DNA damage probes. Increased levels for most types of DNA damage were detected in MCF-7 cells while the processing of DSBs and OCDL was deficient in these cells compared to MCF-10A cells. Furthermore, the total antioxidant capacity of MCF-7 cells was lower compared to their nonmalignant counterparts. These findings point to the important role of complex DNA damage in breast cancer and its potential association with breast cancer development especially in the case of deficient BRCA1 expression.
机译:氧化诱导的应激和DNA损伤与各种人类病理生理状况(包括癌症和衰老)有关。据推测,复杂的DNA损伤,例如双链断裂(DSB)和非DSB双链氧化诱导簇状DNA损伤(OCDL)(相对DNA链上1-10 bp的短DNA片段内有两个或多个DNA损伤)是抵抗修复的病灶挑战了细胞的修复机制。为了评估暴露于放射治疗相关伽马射线剂量的乳腺癌细胞中复杂DNA损伤的诱导和处理,我们测量了MCF-7和HCC1937恶性细胞以及MCF中的单链断裂(SSB),DSB和OCDL -10A非恶性人乳腺细胞。对于SSB,DSB和OCDL的检测和测量,我们使用了碱性单细胞凝胶电泳,γ-H2AX分析,以及使用大肠杆菌修复酶作为DNA损伤探针的脉冲场凝胶电泳的改编。与MCF-10A细胞相比,在MCF-7细胞中检测到大多数类型的DNA损伤的水平增加,而这些细胞中DSB和OCDL的加工不足。此外,MCF-7细胞的总抗氧化能力比非恶性细胞低。这些发现指出了复杂的DNA损伤在乳腺癌中的重要作用及其与乳腺癌发展的潜在联系,特别是在BRCA1表达不足的情况下。

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