The CRISPR-Cas gene scissors offer a wide range of potential applications, from the treatment of genetic diseases to ...
Sequencing bacterial genomes allows scientists to study bacterial diversity, immunity, and the human microbiome, but it ...
Traditional diagnostic methods, such as bacterial culture and PCR-based testing, can take 24–72 hours, delaying critical ...
The CRISPR-Cas gene scissors offer a wide range of potential applications, from the treatment of genetic diseases to antiviral therapies and diagnostics. However, to safely harness their powers, ...
Researchers have revealed new details about the CRISPR-Cas5-HNH/Cascade complex, a variant of the type I-E CRISPR-Cas system, ...
An artificial-intelligence network trained on a vast trove of sequence data is a step towards designing completely new ...
Antimicrobial resistance (AMR) is a critical global health challenge, requiring early and accurate detection of resistance ...
Building a gene editor took months. With CRISPR even high-schoolers can get hold of editing systems in the time it takes to order RNA sequences online and have them shipped by FedEx. In a short while ...
The new doors AI and machine learning are opening to scientists undoubtedly will invite weighty ethical and moral questions ...
Like recombinant DNA before it, gene editing has the potential to transform medicine, agriculture and more. CRISPR is now used by thousands of biologists in labs across the globe. A revolution in food ...
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Activating complex regions of the genome to treat rare diseases: Researchers identify a a master epigenetic switchGersbach's laboratory and collaborators across Duke have spent over a decade developing ways of using CRISPR to modulate ...
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