A more effective vaccine technology may be on the horizon. In a new study in mice, researchers from the University of Copenhagen demonstrate that a simple addition to mRNA vaccines can significantly ...
Leveraging its integrated "design-synthesis-quality control" system, Creative Biolabs is overcoming bottlenecks in mRNA ...
Advanced analytics and artificial intelligence (AI) will help make mRNA vaccines and therapeutics better by allowing biopharma engineers to fine-tune the enzymes used to manufacture such products.
This study reports an important and novel finding that TENT5A, an enzyme involved in fine-tuning poly(A) tail length on selected mRNAs, is required for proper enamel mineralization in mice. The ...
N4-Acetylation of cytidine (ac4C) is an mRNA modification that enhances cellular mRNA stability and translation. Most eukaryotic organisms catalyze ac4C using a homologue of human N-acetyltransferase ...
A team of researchers led by Dr. Kim V. Narry, director of the Center for RNA Research at the Institute for Basic Science (IBS), has uncovered a key cellular mechanism that affects the function of ...
Therapeutic mRNA delivered via lipid nanoparticles restored sperm production in genetically infertile mice and produced live ...