Transporting molecules across biological membranes is essential for life. In nature, this can occur through passive transport ...
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 ...
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 ...
Programmable DNA nanostructures could help move stroke care beyond emergency reperfusion toward targeted brain repair, but the field still faces major safety and translation hurdles. The authors ...
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 ...
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 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 ...
Amsbio's immunoMUSE® kits use enzyme-free DNA nanotechnology to simplify multiplex immunofluorescence while delivering ...
For decades, scientists have largely relied on painstaking trial and error to coax proteins into crystalline forms.
Researchers at IISER-Brahmapur develop a nanotechnology-enabled biosensing platform for rapid and sensitive detection of ...