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Assessing the Effectiveness of Genome-Editing Technologies
Researchers have developed a cost-effective and rapid method for assessing edits generated by CRISPR-Cas9 and other genome-editing technologies.
New Cancer Drug Target Found in Dual-Function Protein
Findings from a study from TSRI have shown that targeting a protein called GlyRS might help to halt cancer growth.
Alzheimer's Genetics Point To New Research Direction
A University of Adelaide analysis of genetic mutations which cause early-onset Alzheimer’s disease suggests a new focus for research into the causes of the disease.
Contagious Cancers Are Spreading in Shellfish
Direct transmission of cancer among some marine animals may be more common than once thought, suggests a new study published in Nature by researchers at Columbia University Medical Center (CUMC).
Contagious Cancers Are Spreading in Shellfish
Direct transmission of cancer among some marine animals may be more common than once thought, suggests a new study published in Nature by researchers at Columbia University Medical Center (CUMC).
Fix for 3-Billion-Year-Old Genetic Error
Researchers at The University of Texas at Austin have developed a fix that allows RNA to accurately proofread for the first time.
Higher Frequency of Huntington's Disease Mutations Discovered
University of Aberdeen study shows that the gene change that causes Huntington's disease is much more common than previously thought.
Revealing the Genetic Causes of Bowel Cancer
A landmark study has given the most detailed picture yet of the genetics of bowel cancer — the UK's fourth most common cancer.
The Epigenetic Influences of Chronic Pain
Researchers at Drexel University College of Medicine are aiming to identify new molecular mechanisms involved in pain.
Fighting Resistant Blood Cancer Cells
Biologists present new findings on chronic myeloid leukemia and possible therapeutic approaches.
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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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Hamilton

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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