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Transplanting Gene into Injured Hearts Creates Biological Pacemakers
Researchers develop first minimally invasive gene therapy procedure to treat heart rhythm disorders by transforming ordinary heart muscle cells into specialized rhythm-keeping cells, potentially eliminating future need for electronic pacemakers.
Common Gene Variants Account for Most Genetic Risk for Autism
Roles of heritability, mutations, environment estimated - NIH-funded study.
Using LC-MS to Analyse Sulfonamides in Food Grade Honey
Sulfonamides are one of a number of groups of chemicals whose presence in honey is limited by international regulations.
ChIP Sequencing Kit for Next Generation Sequencing
The assay kit from Porvair Sciences extends the benefits of their proprietary Chromatrap® solid state ChIP technology.
Illumina's HiSeq X Ten Sequencing Technology for Population Studies
Next-generation sequencing technologies to be implemented at new High-Throughput Genomics Center for the MENA region.
Foodborne Pathogen Detection Speeds Up Dramatically
Next-generation sequencing techniques allow rapidly identification of strains of salmonella, quickening responses to potential outbreaks.
Bowel Cancer Breakthrough May Benefit Thousands of Patients
Researchers at Queen’s University have discovered how two genes cause bowel cancer cells to become resistant to treatments used against the disease.
Innovative Technology Enables First Crystal Structure of mGlu5 Transmembrane Domain to be Determined
Several novel drug candidates have been identified to help treat specific neuropsychiatric disorders.
NIH Scientists Identify Gene Linked to Fatal Inflammatory Disease in Children
Repurposed drugs may offer first potential therapy.
Replace Reduce Refine
A way forward for antibiotic use in agriculture.
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Computational Approaches forThe Discovery of Small Molecule Protein-Protein Interaction Inhibitors
Dr Arnout Voet, RIKEN, speaking at Discovery Chemistry Congress 2013.
Date Posted: Wednesday, May 22, 2013
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Stress Turns Ordinary Cells Pluripotent
Researchers demonstrate that ordinary somatic cells from newborn mice can be stripped of their differentiation memory, reverting to a state of pluripotency.
Thursday, January 30, 2014
New Fluorescent Protein from Eel Revolutionizes Key Clinical Assay
Unagi, the sea-going Japanese freshwater eel, harbors a fluorescent protein that could serve as the basis for a revolutionary new clinical test.
Friday, June 21, 2013
Gene Identified Responsible for Disorders of Bones and Connective Tissue
Researchers have identified a gene that when mutated is responsible for a spectrum of disorder.
Monday, May 13, 2013
Japanese Team Creates Cancer-Specific Killer T Cells from iPS Cells
Researchers have succeeded for the first time in creating cancer-specific, immune system cells called killer T lymphocytes, from induced pluripotent stem cells (iPS cells).
Wednesday, January 09, 2013
New Metal Hydride Clusters Provide Insights into Hydrogen Storage
The study sheds light on a class of heterometallic molecular structures whose unique features point the way to breakthroughs in the development of lightweight fuel cell technology.
Thursday, September 22, 2011
RIKEN: Genome-wide Study Reveals 3 New Susceptibility Loci for Adult Asthma in Japanese Population
The findings appear in Nature Genetics and derive from a genome-wide study of 4836 Japanese individuals.
Monday, August 01, 2011
Overlooked Peptide Reveals Clues to Causes of Alzheimer's Disease
Highly aggregative and neurotoxic amyloid peptide A-ß-43 points the way to new approaches for AD diagnosis and treatment.
Monday, July 04, 2011
Genetic Variant Linked to Development of Liver Cancer in Hepatitis C Virus Carriers
The research group conduct a genome-wide study to identify risk factors connecting HVC and HCC.
Monday, July 04, 2011
RIKEN: Mechanism for Stress-induced Epigenetic Inheritance Uncovered in New Study
Results highlight the role of the transcription factor dATF-2 in chromatin assembly, marking a major advance in understanding of non-Mendelian inheritance.
Friday, June 24, 2011
Discovery of DNA Silencing Mechanism Reveals How Plants Protect Their Genome
Researchers have clarified a key epigenetic mechanism by which an enzyme in the model plant Arabidopsis protects cells from harmful DNA elements.
Monday, May 16, 2011
 
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