SAN DIEGO, March 14, 2005 --Scientists at The Scripps Research Institute in La Jolla, California are reporting today at the 229th national meeting of the American Chemical Society progress toward the ...
The promise of genome editing to help understand human diseases and create new therapies is vast, but technological limitations have limited advancement of the field. While existing editing ...
Ever since the now Nobel-winning discovery of CRISPR genome editing in 2012, scientists have been racing to improve on its DNA-targeting-and-cutting action. A huge step forward came in 2016, with the ...
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Fluorogenic DNA aptamers produce light only in the correct structural state, enabling programmable molecular logic, biosensing, DNA origami integrity reporting, and reusable mRNA detection through ...
Researchers from the Chinese Academy of Sciences (CAS) and their collaborators at Qi Biodesign have developed a strand-specific, CRISPR-free editing system for modifying genomes in the nucleus, ...
DNA is the molecular basis of heredity, the inherited traits that pass between generations in a person's family tree. Embodied in the sequence of base pairs, DNA carries information between ...
For the past few years, a biotech company called Tessera Therapeutics has been working away with a singular, lofty goal in mind: revolutionizing the technology used to edit DNA and RNA for scientific ...
This image illustrates the chemical structures of the five main nucleobases found in DNA and RNA. The pyrimidines, thymine (DNA), uracil (RNA), and cytosine are shown on top while the purines, adenine ...