DNA–protein hydrogels extend DNA nanotechnology from precisely organized nanoscale structures into dynamic soft materials ...
New Delhi, Feb. 20, 2025 (GLOBE NEWSWIRE) -- The global DNA nanotechnology market was valued at US$ 4.77 billion in 2024 and is anticipated to reach US$ 25.57 billion by 2033, growing at a CAGR of ...
In this interview, AZoNano speaks with Dr. Kun Zhou, an Associate Research Scientist at Yale University, about recent advances in DNA nanotechnology. He discusses his work on a DNA-based nanodevice ...
The shape and morphology of a cell play a key role in the biological function. This corresponds to the principle of "form follows function," which is common in modern fields of design and architecture ...
Crisscross polymerization enables the assembly of hundreds of unique DNA origami ‘slats’ into micron-sized structures with nanoscale precision. To design these megastructures, thousands of handle ...
Artificial DNA letters beyond A, T, G, C break a fundamental pairing rule to produce nanostructures with new shapes, far greater durability, and an unexpected ability to self-sort. But the four-letter ...
Since the COVID-19 pandemic, pretty much everybody is familiar with this technology: paper-based rapid test strips, also called lateral flow immunoassays (LFIAs). They enable easy detection of ...
Researchers are exploring how DNA–protein hydrogels can turn molecular information into mechanical and functional properties ...
Transporting molecules across biological membranes is essential for life. In nature, this can occur through passive transport, known as diffusion. "Biological systems often use mechanical motion to ...
Scientists at the University of Stuttgart have succeeded in controlling the structure and function of biological membranes with the help of "DNA origami". The system they developed may facilitate the ...
(Nanowerk News) Scientists at the University of Stuttgart have succeeded in controlling the structure and function of biological membranes with the help of DNA origami. The system they developed may ...