Recombinase-mediated cassette exchange (RMCE) is a powerful tool for the modification of the Drosophila genome and its utility has now been extended through the use of another site-specific ...
The future of gene editing depends on tools that are programmable, scalable, and adaptable to diverse disease contexts. Recombinases are emerging as a promising solution, but optimizing their ...
A research team presents a noninvasive light-sensitive photoactivatable recombinase suitable for genetic manipulation in vivo. The highly light-sensitive property of photoactivatable Flp recombinase ...
In a leap forward for genetic engineering, a team of researchers from the Arc Institute has discovered the bridge recombinase mechanism, a precise and powerful tool to recombine and rearrange DNA in a ...
Announcing a new article publication for Zoonoses journal. With the advent of molecular technology, several isothermal techniques for rapid detection of zoonotic pathogens have been developed. Among ...
A rapid isothermal amplification technique enables pathogen identification and antibiotic resistance detection in low-resource settings. Recombinase polymerase amplification (RPA) is a technique for ...
A new molecule, photoactive Flp recombinase, has been developed for use in an optogenetic technique that can deliver non-invasive genetic manipulation in the deep brain tissue of mice. A research team ...
The discovery of CRISPR-Cas9’s gene-editing prowess revolutionized genetic engineering just over a decade ago. Now it appears that genetic engineering technology may be taking its next big leap.
Scientists in the laboratory of David Liu, PhD, at the Broad Institute of MIT, Harvard University, and Howard Hughes Medical Institute (HHMI) have designed an improved version of prime editing ...
(Nanowerk News) In a leap forward for genetic engineering, a team of researchers from the Arc Institute have discovered the bridge recombinase mechanism, a precise and powerful tool to recombine and ...