Magnetic nanoparticles (MNPs) are sub-100 nm structures composed of magnetic cores, often iron oxides or ferrites, which exhibit unique magnetic behaviours distinct from their bulk counterparts. Their ...
When designing a nanoparticle-enabled drug delivery system, many intersecting considerations must be taken into account, such as the target location of the drug payload, the method of delivery, uptake ...
Biomedical engineers at Duke University have developed a platform that combines automated wet lab techniques with artificial intelligence (AI) to design nanoparticles for drug delivery. The approach ...
A small shift in temperature is enough to make a new class of nanoparticles snap together, offering a novel way to deliver fragile medicines. Researchers at the University of Chicago Pritzker School ...
A new study details the development of a nanoparticle-based system that delivers concentrated chemotherapy specifically to cancer cells and not normal cells, potentially allowing clinicians to ...
Scientists at Xi’an Jiaotong-Liverpool University (XJTLU) and at Nanjing University have combined a widely used medical polymer with a natural blood protein to develop a new nanoparticle drug delivery ...
Organoids, tiny replicas of human organs, are grown from stem cells or tumor cells and develop into three-dimensional structures containing many of the same cell types as the real organ or tissue.
Recently, nanoparticle-driven 3D bioprinting has emerged as a revolutionary approach for high-throughput drug screening, offering enhanced scalability, accuracy, and efficiency while reducing reliance ...