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US Navy-backed scientists genetically modified spiders to create stronger, lighter silk with potential uses in defense, ...
Cas9, the University of Bayreuth’s Biomaterials research group was able to bioengineer a common house spider to produce glowing red silk. Professor Thomas Scheibel and doctoral student Edgardo ...
A team of researchers from University of Bayreuth have used genetic modification on common house spiders to study the underrepresented organism and produce functionable spider silk protein. Scroll to ...
CRISPR-Cas9 is a powerful gene editing system that has revolutionized our ability to treat disease and probe the human genome. CRISPR has been used to edit the genomes of animals, plants, and microbes ...
Genetic defects are exceedingly common, which is not surprising considering just how many cells make up our bodies, including our reproductive cells. While most of these defects have no or only ...
The U.S. military is interested in ‘super spiders’ capable of producing silk with extraordinary features. Don’t worry—it ...
The DNA polymerase market is poised for steady growth, with a projected CAGR of 6-8% over the forecast period, driven by ...
Scientists used CRISPR gene editing technology to make spiders produce glowing red silk. They did this in an effort to eventually have spiders create ...
The mRNA platform market holds significant opportunities, driven by advancements in LNP delivery systems, codon optimization, and synthetic biology tools like CRISPR-Cas9. These innovations support ...
This week, mRNA vaccines are set to face intense scrutiny from critics in Congress. Here's an explainer of how we know they ...
Explore how CRISPR could become a powerful antiviral tool against HIV, Hepatitis B, HPV, and more, based on emerging research.
This study identifies 53BP1 as an interaction partner of GMCL1 (a likely CUL3 substrate receptor). The study seeks to link this finding to regulation of the mitotic surveillance pathway and paclitaxel ...
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