OGT Releases New CytoSure™ Microarray for Research into Hematological and Solid Cancers

25 Mar 2013

Product news

Oxford Gene Technology (OGT), provider of innovative genetics research and biomarker solutions to advance molecular medicine, has released a new microarray to improve the accuracy and efficiency of cancer research. The CytoSure™ Cancer +SNP array (4x180k) combines long oligo array comparative genomic hybridization (aCGH) probes with fully validated single nucleotide polymorphism (SNP) content, providing the superior detection of both copy number variations (CNVs) and loss of heterozygosity (LOH) on a single chip. The array has been optimized in collaboration with Professor Jacqueline Schoumans from the Lausanne University Hospital in Switzerland, an expert in both aCGH and cancer genomics. Unique to the proprietary CytoSure™ Cancer +SNP array, any reference sample can be used for analysis without changes to the standard aCGH protocol and, thanks to novel SNP probe chemistry, no restriction digest is required. The capacity to use matched samples is a particular advantage for research into genetic aberrations in cancer, enabling any constitutional abnormalities to be filtered out.

Professor Schoumans commented: “The development of a new microarray with the capacity to detect both CNVs and LOH simultaneously was vital for improving the efficiency and quality of our research. By working very closely with the technical experts at OGT, we have constructed a new array that allows users to simultaneously screen a wide genomic background for CNVs and LOH, while also enabling in-depth CNV analysis on 1500 known cancer-associated genes. This approach produces accurate and insightful data, with all aberrations clearly highlighted and filtered using OGT’s excellent CytoSure Interpret Software.”

The 60-mer oligonucleotide probes utilized in the array provide a high signal-to-noise ratio and highly sensitive detection; this makes them ideal for research into complex malignant tissues. Thanks to OGT’s CytoSure Interpret Software, data analysis is rapid, reliable and simple to carry out, including updated features, such as the B-allele frequency plot, that have been optimized for the identification of biologically relevant genomic variants in tumor samples.

James Clough, Executive Vice President Commercial at OGT, said: “The new CytoSure™ Cancer +SNP array forms part of OGT’s ongoing strategy to design specialized microarrays to help increase our understanding of cancer formation and development. We plan to further add to this portfolio in the coming months, with the introduction of our Cancer Cytogenomics Microarray Consortium (CCMC) array design. By offering both genome-wide CNV and SNP detection, these arrays will prove a valuable tool for efficiently and accurately defining the genetic nature of a given tumor, facilitating research into more efficacious, targeted treatments.”

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Genome AnalysisGenomics, the study of genomes, includes functional genomics, evolutionary genomics and comparative genomics. There are many genomic technologies such as DNA sequencing of whole genomes, computational biology and bioinformatics. DNA and nucleic acids must be isolated and concentrated from cells for analysis with kits, automated analyzers and software. Other useful technologies for studying genomics include PCR, microarrays and electrophoresis.OligonucleotidesOligonucleotides are small nucleic acid polymers, usually less than 20 bases in length. Oligonucleotides can be made via enzymatic cleavage or more commonly by chemical synthesis with polymerases. Their use includes FISH, southern blots, microarrays and as primers in PCR. High fidelity synthesis kits and detection systems are available for easy production and detection, respectively.Microarray AnalysisMicroarrays, also known as biochips, are used for the detection and analysis of multiple genes, proteins, antibodies, or biomarkers on a single microchip. This can reveal information on protein or gene expression, single nucleotide polymorphism (SNP), copy number variation (CNV), epigenetics and patient health in clinical diagnostic tests. Discover a range of microarray scanners and prefabricated antibody, protein, RNA and DNA microarrays for your analysis or consider creating your own custom microarrays with a microarray printer. Find the best microarray products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.SNPs TechnologySingle nucleotide polymorphisms (SNPs) are individual base variations in a DNA sequence. SNPs are used in research to study predispositions to disease and drug discovery. Products for studying single nucleotide polymorphisms include SNP arrays and detection systems to detect polymorphisms, SNP typing systems for genotyping DNA, and PCR to amplify specific SNPs.Bioprocessing / FermentationBioprocessing is the use of biological materials to perform commercial, scientific or medical research processes. Biological materials used include cells, enzymes and organisms. Usually bioprocessing requires a batch or continuous bioreactor such as a fermentor or cell culture system. The advantages of using a reactor include high productivity, easy configuration, adjustable values and automation.Cancer ResearchAlthough cancer is often referred to as a single condition, it actually consists of more than 100 different diseases. Microscopy, mass spectrometry, high throughput sequencing and flow cytometry are some of the most common techniques employed in cancer research labs.Copy Number VariationSNP GenotypingLoss of Heterozygosity
OGT Releases New CytoSure™ Microarray for Research into Hematological and Solid Cancers