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Review
. 2004 Jul;95(7):559-63.
doi: 10.1111/j.1349-7006.2004.tb02486.x.

Comparative genomic hybridization (CGH)-arrays pave the way for identification of novel cancer-related genes

Affiliations
Review

Comparative genomic hybridization (CGH)-arrays pave the way for identification of novel cancer-related genes

Johji Inazawa et al. Cancer Sci. 2004 Jul.

Abstract

Comparative genomic hybridization (CGH) has already made a significant impact on cancer cytogenetics. However, CGH to metaphase chromosomes can provide only limited resolution at the 5-10 Mb level. To circumvent this limitation, array-based CGH has been devised. Since spotted DNAs in a CGH-array contain sequence information directly connected with the genome database, we can easily note particular biological aspects of genes that lie within regions involved in copy-number aberrations. High-density, sub-megabase arrays can reveal nonrandom chromosome copy-number aberrations responsible for neoplastic transformation that have been masked under complex karyotypes in epithelial solid tumors. High-density CGH-array therefore paves the way for identification of disease-related genetic aberrations that have not yet been detected by existing technologies, and array-based CGH technology should soon be practical for diagnosis of cancer or genetic diseases in the clinical setting.

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References

    1. Mitelman F, Mertens F, Johansson B. A breakpoint map of recurrent chromosomal rearrangements in human neoplasia. Nat Genet 1997; 15: 417–74. - PubMed
    1. Mitelman F, Johansson B, Mertens F. Fusion genes and rearranged genes as a linear function of chromosome aberrations in cancer. Nat Genet 2004; 36: 331–4. - PubMed
    1. Tsuruo T, Naito M, Tomida A, Fujita N, Mashima T, Sakamoto H, Haga N. Molecular targeting therapy of cancer: drug resistance, apoptosis and survival signal. Cancer Sci 2003; 94: 15–21. - PMC - PubMed
    1. Hehlmann R. Current CML therapy: progress and dilemma. Leukemia 2003; 17: 1010–2. - PubMed
    1. Kallioniemi A, Kallioniemi OP, Sudar D, Rutovitz D, Gray JW, Waldman F, Pinkel D. Comparative genomic hybridization for molecular cytogenetic analysis of solid tumors. Science 1992; 258: 818–21. - PubMed

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