Product category:
Genomics
News Release from: Agilent Technologies Europe | Subject: Agilent genomics solution
Edited by the Laboratorytalk Editorial
Team on 23 October 2006
Three cancer centres select Agilent
microarray
Institutions were among seven that were awarded a combined $35 million over three years in NCI grants as Cancer Genome Characterization Centers (CGCC) that are designed to implement the Atlas project.
The US National Cancer Institute (NCI) has announced grant recipients for its coveted Cancer Genome Atlas pilot project, including three institutions using microarray platforms from Agilent Technologies: the University of North Carolina, Dana-Farber Cancer Institute, and Memorial Sloan-Kettering Cancer Center All three institutions will rely on Agilent's genomics solution, comprising microarrays, reagents, hardware and data analysis tools
This article was originally published on Laboratorytalk on 30 Jun 2008 at 8.00am (UK)
Related stories
Agilent updates CGH microarray software
For large-scale experiments, Agilent DNA Analytics 4.0 can process more than 100 microarrays (244K), helping users easily compare data and visualise patterns
Agilent upgrades EZChrom Elite for China and Japan
The software is now localised into Chinese and Japanese, features a single walk-up sample entry screen and offers updated workstation compliance
As part of the NCI initiative, each CGCC is expected to process a minimum of 1000 clinical samples per year.
The CGCC initiative emphasises high-throughput, high-resolution technologies to detect comprehensively genomic, epigenomic and transcriptome aberrations, including alterations in DNA segment copy numbers, translocations, loss of heterozygosity, altered DNA methylation patterns and changes in gene expression, all of which may play a role in cancer.
The pilot project will explore the benefits of a systematic approach for analysing specific types and subtypes of tumours.
Further reading
New standard for validating machine-tool accuracy
Agilent Technologies has introduced its new 5530 Dynamic Calibrator, a laser-based calibration system for measuring machine-tool and coordinate-measuring-machine (CMM) accuracy
High-res scanner for current, next-gen microarrays
Agilent Technologies latest version DNA Microarray Scanner employs SureScan high resolution technology to deliver high resolution and rapid scan times for current and next-generation microarrays
Industry's most inert capillary GC columns
Agilent Technologies has introduced what it says are the industry's most inert family of capillary gas chromatography (GC) columns, the Agilent J+W Ultra Inert Capillary GC columns
"The University of North Carolina group, based in the Lineberger Comprehensive Cancer Center, will perform genome-wide gene expression profiling and microRNA expression profiling, both using Agilent DNA oligo microarrays," explained UNC Chapel Hill's Charles Perou, assistant professor, department of genetics.
"The UNC group chose the Agilent platform because of its flexibility in gene content, which allows researchers to change any feature, or gene, at any time.
"As new genes, microRNAs or gene splice forms are discovered, they can easily and seamlessly be included into the next phase of microarrays.
"The Agilent platform provides proven sensitivity and specificity for each feature," he added, "along with streamlined protocols and hardware that will allow us to achieve the demanding high-throughput needs of the Cancer Genome Atlas project".
The Cancer Genome Characterization Center at Harvard Medical School is composed of Raju Kucherlapati, Isaac Kohane, Peter Park and Samuel Aronson of the Harvard Partners Center for Genetics and Genomics; George Church and Jonathan Seidman of the Harvard Medical School; and Lynda Chin, a researcher with the Dana-Farber Cancer Institute.
"The goal of this center is to identify novel genes important in initiation and progression of cancer by quantitating DNA and RNA dosage using arrayCGH, or comparative genomic hybridisation, and a novel, highly sensitive method called polony sequencing," said Chin.
"We chose CGH as a key tool because genomic alterations have proven to be a productive entry point for discovery of cancer-relevant genes," she added.
"We selected the Agilent platform because of its excellent signal-to-noise detection when hybridized with full-complexity genomic DNA.
"We fully expect that future researchers will build on this work, using the same CGH platform".
"It is gratifying that Agilent microarrays are playing such a major role in this vital programme," said Agilent director of genomics marketing Kevin Meldrum.
"The utility of microarrays has expanded beyond gene expression to applications such as CGH, DNA methylation, and miRNA.
"We're enabling these studies as well as developing our microarray technology by optimizing the balance between density, sensitivity and flexibility with our platform.
"It's rewarding to know that these leading researchers and the NCI appreciate the value of this approach".
The CGCC programme is funded by the NCI and the National Human Genome Research Institute (NHGRI), part of the US National Institutes of Health.
• Agilent Technologies Europe: contact details and other news
• Email this article to a colleague
• Register for the free Laboratorytalk email newsletter
• Laboratorytalk Home Page

