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首页> 外文期刊>Chromosome Research >Chromosome microdissection identifies genomic amplifications associated with drug resistance in a leukemia cell line: an approach to understanding drug resistance in cancer
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Chromosome microdissection identifies genomic amplifications associated with drug resistance in a leukemia cell line: an approach to understanding drug resistance in cancer

机译:染色体显微解剖可鉴定与白血病细胞系耐药性相关的基因组扩增:了解癌症耐药性的一种方法

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A significant problem encountered in the treatment of cancer patients is that cancer cells often evolve resistance to chemotherapeutic agents. One of the mechanisms responsible for drug resistance is gene amplification. The study of the behavior of genes conferring drug resistance is very important to determine future treatments for cancer patients that will minimize the effect of gene amplification. One of the best methods to investigate this phenomenon is to use chromosome microdissection to directly access the amplified gene or genes. In the present study, chromosome microdissection and fluorescent in-situ hybridization (FISH) were applied for the identification of genes residing in a homogeneously staining region (HSR) in drug-resistant cell sublines developed by treatment of the T-cell leukemia cell line CCRF-CEM with increasing levels of the anthracycline, epirubicin. We have demonstrated that the selection by epirubicin actually elevated the level of the multidrug resistance-associated protein (MRP1) gene. We argue that the breakage fusion bridge (B-F-B) cycle offers a plausible explanation for this amplification. The DNA prepared from the amplified regions by chromosome microdissection provides a resource for future investigations looking for the possible presence of novel genes contributing to drug resistance.
机译:在癌症患者的治疗中遇到的重要问题是癌细胞经常发展出对化学治疗剂的抗性。引起耐药性的机制之一是基因扩增。赋予耐药性的基因行为的研究对于确定将使基因扩增的影响最小化的癌症患者的未来治疗非常重要。研究此现象的最佳方法之一是使用染色体显微切割直接访问扩增的一个或多个基因。在本研究中,染色体显微切割和荧光原位杂交(FISH)用于鉴定通过治疗T细胞白血病细胞系CCRF开发的耐药细胞亚系中均一染色区(HSR)中的基因-CEM随着蒽环类药物表柔比星水平的升高而增加。我们已经证明,表柔比星的选择实际上提高了多药耐药相关蛋白(MRP1)基因的水平。我们认为,断裂融合桥(B-F-B)循环为这种扩增提供了合理的解释。通过染色体显微切割从扩增区域制备的DNA为将来的研究提供了资源,以寻找可能有助于耐药性的新基因的存在。

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