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10.3390/microarrays4040454

http://scihub22266oqcxt.onion/10.3390/microarrays4040454
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C4996403!4996403!27600234
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suck abstract from ncbi


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pmid27600234      Microarrays+(Basel) 2015 ; 4 (4): 454-73
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  • Genomic-Wide Analysis with Microarrays in Human Oncology #MMPMID27600234
  • Inaoka K; Inokawa Y; Nomoto S
  • Microarrays (Basel) 2015[Dec]; 4 (4): 454-73 PMID27600234show ga
  • 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.
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