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500 Million Year Reset for the Immune System
A single factor can reset the immune system of mice to a state likely similar to what it was 500 million years ago, when the first vertebrates emerged.
Sequencing Identifies Gene Variant Responsible for Lupus
Research demonstrates it is feasible to identify the individual causes of lupus in patients by using DNA sequencing, allowing doctors to target specific treatments to individual patients.
ADME of Antibody-Maytansinoid Conjugates
Continued understanding of the ADME properties of ADCs entering clinical evaluations should provide additional insight into attributes that may be necessary for clinical success.
Single Enzyme is Necessary for Development of Diabetes
12-LO enzyme promotes the obesity-induced oxidative stress in the pancreatic cells.
The Power of Salt
MIT study investigates power generation from the meeting of river water and seawater.
Suspect Gene Corrupts Neural Connections
“Diseases of synapses” demo’d in a dish - NIH-funded study.
Stanford Research Shows Value of Clams, Mussels in Cleaning Dirty Water
New Stanford research shows that bivalves can cleanse streams, rivers and lakes of potentially harmful chemicals that treatment plants can't fully remove.
Molecular Shuttle Speeds Up Hydrogen Production
Latest experiments with semiconductor nanocrystals succeed in significantly increasing the yield of hydrogen.
New Material Could Enhance Fast and Accurate DNA Sequencing
Nanopores in the material MoS2 sequence DNA more accurately, quickly and inexpensively.
Heart Molecule Discovery Could Lead to Effective Treatment for Heart Failure
Researchers have discovered a previously unknown cardiac molecule that could provide a key to treating, and preventing, heart failure.
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Genomic Analyses of Hormone Signaling and Gene Regulation
Edwin Cheung, Genome Institute of Singapore, speaking at Genomics Research Asia 2012
Date Posted: Friday, February 01, 2013
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Scientists Engineer Human Stem Cells and Move Closer to Mastering Regenerative Medicine
Researchers have successfully converted human embryonic stem cells (hESCs) cultured in the laboratory to a state that is closer to the cells found in the human blastocyst.
Wednesday, December 11, 2013
Genome Institute of Singapore and Fluidigm Establish Asia's First Single-Cell Genomics Research Center
Center exclusively dedicated to accelerating the understanding of how individual cells work, and how diagnosis and treatment might be enhanced through insight derived from single cells.
Monday, December 17, 2012
Singapore Scientists Lead in 3D Mapping of Human Genome to Help Understand Human Diseases
This discovery is crucial in understanding how human genes work together, and will re-write textbooks on how transcription regulation and coordination takes place in human cells.
Thursday, February 02, 2012
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Findings provides invaluable information to determine the design and interpretation of genetic studies of human diseases.
Monday, December 07, 2009
Genome Institute of Singapore and Roche NimbleGen: Tracking the Evolutionary Path of the H1N1 Influenza A
Researchers develop a generic PCR approach to amplify full genome of influenza A virus; followed by NimbleGen microarray-based hybridization sequencing.
Friday, May 29, 2009
Singapore Scientists’ made Significant Discovery for Stem Cell Technology and Clinical Research
Scientists reveal important insights into how researchers can manipulate and engineer different stem cells for the treatment of human degenerative disorders.
Tuesday, September 23, 2008
Scientists Found a Way to Enhance Development of Human Embryonic Stem Cells Therapies
Scientists at the Genome Institute of Singapore and the National University of Singapore have found a way of manipulating ESCs that allows stem cells to be produced for use in clinical treatments.
Tuesday, January 23, 2007
 
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