In the realm of biotechnology, few innovations have captured the imagination quite like DNA origami. This technique, which involves folding DNA molecules into specific shapes and structures, has long ...
Scientists often describe life as a series of chemical reactions. Pallav Kosuri, PhD, describes life as movement. Chemical ...
The skin is the body's largest organ. It is a protective shield that keeps harmful pathogens out and vital fluids inside. These very properties make it a tough engineering challenge to design wearable ...
Researchers used AI to design working bacteriophages for the first time, raising questions about antibiotic resistance and biosecurity.
Regular glass is brittle and fragile. But pure glass built into structures using DNA is a different beast entirely.
Mechanical flexibility improves nanocarrier movement through mucus when physical confinement dominates, while surface coatings must first prevent aggregation when adhesion controls transport.
Seoul National University College of Engineering announced that a joint research team led by Professor Do-Nyun Kim of the Department of Mechanical Engineering at Seoul National University and ...
Once used to fold DNA into nanoscale shapes, DNA origami is now emerging as a programmable platform for smarter diagnostics, targeted therapies, and next-generation nano-enabled devices From Blueprint ...
Scientists have developed a new way to improve the reliability of DNA origami for future biomedical, agritech and other technological applications. Scaffolded DNA and RNA origami is a technique that ...