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Genome Copy Number Feature Selection Based on Chromosomal Regions Alterations and Chemosensitivity Subtypes

机译:基于染色体区域改变和化学敏感性亚型的基因组拷贝数特征选择

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Cancer disease causes millions of deaths throughout the world and thousands in Costa Rica, and cancer treatment causes an immense economic burden on the social security system because drugs against the disease are extremely expensive. Through DNA sequencing techniques, the copy number of each gene could be found in order to describe how many times a gene is repeated within chromosomes. This type of data is of great importance since the cancer manifests a phenomenon called aneuploidy that consists of alterations in the number of chromosomes copies. Theories about the importance of aneuploidy in cancer supposed this phenomenon is a evolutionary engine that allows the disease to grow and resist changes produced by the organism and the treatments applied to these tissues. Studies have collected data on the number of copies in well-known databases such as CCLE and TCGA, which can be used to analyze the relationship between alterations in DNA and resistance to chemotherapies. In this study as a contribution, it was proposed to use statistical pattern recognition methods in order to identify chromosomal regions of DNA related to cancer chemosensitivity subtypes (resistant and sensitive subgroups) and then use these regions for CCLE cell lines labeling and TCGA samples classification.
机译:癌症疾病导致全世界数百万死亡,哥斯达黎加成千上万,癌症治疗导致社会保障制度的巨大经济负担,因为对疾病的药物非常昂贵。通过DNA测序技术,可以找到每个基因的拷贝数,以描述基因在染色体中重复多次。这种类型的数据非常重要,因为癌症表现出一种称为非倍性的现象,其包括染色体拷贝数的变化。关于癌症中非整倍性的重要性的理论认为这种现象是一种进化发动机,使疾病能够生长和抗抵抗生物体产生的变化和适用于这些组织的处理。研究已经收集了关于众所周知的数据库中的副本数量的数据,例如CCL和TCGA,其可用于分析DNA改变与化学疗法的抗性之间的关系。在这项研究中作为贡献,提出使用统计模式识别方法,以鉴定与癌症化学敏感性亚型(抗性和敏感亚组)相关的DNA的染色体区域,然后使用这些区域用于CCLE细胞系标记和TCGA样品分类。

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