4.4 Article

Highly Multiplexed Fluorescence in Situ Hybridization for in Situ Genomics

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JOURNAL OF MOLECULAR DIAGNOSTICS
卷 21, 期 3, 页码 390-407

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ELSEVIER SCIENCE INC
DOI: 10.1016/j.jmoldx.2019.01.010

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资金

  1. NIH National Cancer Institute
  2. Innovative Molecular Analysis Technologies program [1R21CA183686-01A1]
  3. Harvard Catalyst/The Harvard Clinical and Translational Science Center, NIH, National Center for Advancing Translational Sciences [UL1 TR001102]
  4. Harvard University and its affiliated academic health care centers'
  5. NIH Shared Instrumentation Grant (SIG) award [1S 10RR029237-01]

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The quantification of changes in gene copy number is critical to our understanding of tumor biology and for the clinical management of cancer patients. DNA fluorescence in situ hybridization is the gold standard method to detect copy number alterations, but it is limited by the number of genes one can quantify simultaneously. To increase the throughput of this informative technique, a fluorescent barcode system for the unique labeling of dozens of genes and an automated image analysis algorithm that enabled their simultaneous hybridization for the quantification of gene copy numbers were devised. We demonstrate the reliability of this multiplex approach on normal human Lymphocytes, metaphase spreads of transformed cell lines, and cultured circulating tumor cells. It also opens the door to the development of gene panels for more comprehensive analysis of copy number changes in tissue, including the study of heterogeneity and of high-throughput clinical assays that could provide rapid quantification of gene copy numbers in samples with limited cellularity, such as circulating tumor cells.

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