High-resolution copy number analysis of paraffin-embedded archival tissue using SNP BeadArrays
Author(s) -
Jan Oosting,
Esther H. Lips,
Ronald van Eijk,
Paul H.C. Eilers,
Károly Szuhai,
Cisca Wijmenga,
Hans Morreau,
Tom van Wezel
Publication year - 2007
Publication title -
genome research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 9.556
H-Index - 297
eISSN - 1549-5469
pISSN - 1088-9051
DOI - 10.1101/gr.5686107
Subject(s) - biology , snp array , copy number analysis , copy number variation , snp , comparative genomic hybridization , computational biology , molecular inversion probe , dna microarray , genetics , single nucleotide polymorphism , gene , genome , genotype , gene expression
High-density SNP microarrays provide insight into the genomic events that occur in diseases like cancer through their capability to measure both LOH and genomic copy numbers. Where currently available methods are restricted to the use of fresh frozen tissue, we now describe the design and validation of copy number measurements using the Illumina BeadArray platform and the application of this technique to formalin-fixed, paraffin-embedded (FFPE) tissue. In fresh frozen tissue from a set of colorectal tumors with numerous chromosomal aberrations, our method measures copy number patterns that are comparable to values from established platforms, like Affymetrix GeneChip and BAC array-CGH. Moreover, paired comparisons of fresh frozen and FFPE tissues showed nearly identical patterns of genomic change. We conclude that this method enables the use of paraffin-embedded material for research into both LOH and numerical chromosomal abnormalities. These findings make the large pathological archives available for genomic analysis, which could be especially relevant for hereditary disease where fresh material from affected relatives is rarely available.
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