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Genomic-Wide Analysis with Microarrays in Human Oncology

机译:在人类肿瘤学中使用微阵列进行全基因组分析

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摘要

DNA microarray technologies have advanced rapidly and had a profound impact on examining gene expression on a genomic scale in research. This review discusses the history and development of microarray and DNA chip devices, and specific microarrays are described along with their methods and applications. In particular, microarrays have detected many novel cancer-related genes by comparing cancer tissues and non-cancerous tissues in oncological research. Recently, new methods have been in development, such as the double-combination array and triple-combination array, which allow more effective analysis of gene expression and epigenetic changes. Analysis of gene expression alterations in precancerous regions compared with normal regions and array analysis in drug-resistance cancer tissues are also successfully performed. Compared with next-generation sequencing, a similar method of genome analysis, several important differences distinguish these techniques and their applications. Development of novel microarray technologies is expected to contribute to further cancer research.
机译:DNA微阵列技术发展迅速,对研究基因组规模的基因表达产生了深远的影响。这篇评论讨论了微阵列和DNA芯片设备的历史和发展,并描述了特定的微阵列及其方法和应用。特别地,微阵列通过在肿瘤学研究中比较癌组织和非癌组织而检测到许多新的癌症相关基因。近来,正在开发新的方法,例如双组合阵列和三组合阵列,其允许更有效地分析基因表达和表观遗传变化。与正常区域相比,在癌前区域中的基因表达变化的分析以及在耐药性癌症组织中的阵列分析也已成功进行。与下一代测序(一种类似的基因组分析方法)相比,这些技术及其应用有几个重要区别。有望开发新的微阵列技术,以促进进一步的癌症研究。

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