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A Cross-Platform Comparison of Affymetrix, Agilent, and Illumina Microarray Reveals Functional Genomics in Colorectal Cancer Progression

机译:Affymetrix,Agilent和Illumina芯片的跨平台比较揭示了结直肠癌进展中的功能基因组学

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Colorectal cancer is one of the most common cancers with the second highest mortality rate in the world. The microarray can be used to collect gene expression alteration information from many tissue samples that will be useful to understand colorectal cancer from the molecular level. However, the mechanism behind the progression from normal to cancer is not fully understood. Here, a cross-platform comparison among three common microarray platforms (Affymetrix, Agilent, and Illumina) was applied. As results, we found a significant correlation of purine metabolism and p53 signaling pathway role in colorectal cancer progression. Purine metabolism can control the regulation of cell proliferation which involve hydro-lyase activity on organelle lumen. Meanwhile, genetic alterations in p53 signaling pathways could control some hallmarks of cancer. These two terms might play important roles in inducing normal colorectal cells into cancer.
机译:大肠癌是世界上死亡率第二高的最常见的癌症之一。该微阵列可用于收集许多组织样品中的基因表达改变信息,这将有助于从分子水平了解大肠癌。但是,从正常到癌症发展的机制尚不完全清楚。在此,我们对三种常见的微阵列平台(Affymetrix,Agilent和Illumina)进行了跨平台比较。结果,我们发现嘌呤代谢与p53信号通路在大肠癌进展中的作用显着相关。嘌呤的代谢可以控制细胞增殖的调控,其中涉及细胞器内腔的水解酶活性。同时,p53信号通路中的遗传改变可以控制某些癌症标志。这两个术语可能在诱导正常结直肠细胞癌变中起重要作用。

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