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New Virus Identified In Blood Supply
Scientists have discovered a new virus that can be transmitted through the blood supply.
Tracking Changes in DNA Methylation In Real Time At Single-Cell Resolution
Whitehead Institute researchers have developed a methodology to monitor changes in DNA methylation over time in individual cells.
DNA Alterations as Among Earliest to Occur in Lung Cancer Development
Genetic footprints of precancer detectable in some blood samples.
Bar-Coding Technique Opens Up Studies Within Single Cells
Scientists have developed a method for simultaneously imaging and identifying dozens of molecules within individual cells.
Scientists Learn How to Predict Plant Size
VIB and UGent scientists have developed a new method which allows them to predict the final size of a plant while it is still a seedling.
New Device Reduces Time to Diagnose Infections
A new diagnostic device created by a collaborative team of UA engineers and scientists may significantly reduce the amount of time necessary to diagnose tissue infections.
Surprising Mechanism Behind Antibiotic-Resistant Bacteria Uncovered
Now, scientists at TSRI have discovered that the important human pathogen Staphylococcus aureus, develops resistance to this drug by “switching on” a previously uncharacterized set of genes.
Researchers Develop qPCR Prognosis Test for NSCLC Patients
A nine-gene molecular prognostic index (MPI) for patients with early-stage non-small cell lung cancer (NSCLC) was able to provide accurate survival stratification and could potentially inform the use of adjuvant therapy in patients struggling with the disease.
Genome Wide Annotation of Primary miRNAs Reveals Novel Mechanisms
Researchers have devised a strategy for genome-wide annotation of primary miRNA transcripts, providing extensive new annotations in human and mouse, and shedding light on mechanisms of regulation of microRNA gene expression.
‘Fishing Expedition’ Nets Nearly Tenfold Increase in Number of Sequenced Virus Genomes
Newly developed computational tool finds 12,500 genomes of viruses that infect microbes.
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Rapid, High Throughput Extraction and Purification of Genomic DNA from Whole Blood Using the Akonni TruTip® Extraction System on the Hamilton Microlab® STAR Liquid Handling System
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Akonni Biosystems has developed the simple and effective ultra-rapid TruTip® automated extraction method designed to isolate genomic DNA from low volumes of whole blood for downstream genetic testing including any type of PCR, sequencing and microarray detection. The tip-based extraction technology is paired with the advanced, proven and reliable Hamilton Microlab STAR liquid handling system for high throughput sample processing. Comparable yields of high-quality genomic DNA were extracted using the TruTip method when compared directly to industry leaders. Reproducibility studies demonstrated high precision with low standard deviations and high quality.

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Hamilton Robotics and French Police Scientifique Publish Paper Describing Large-Scale Production of Genetic Profiles
More than 300,000 profiles have already been processed on the Hamilton platforms and stored in French Database.
Wednesday, March 10, 2010
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