Scientists engaged in precision medicine research focus intensely on target-based drug development. In doing so, they help improve the safety and efficacy profiles of future therapies by reducing ...
Nanoparticle-based drug delivery systems utilise the unique physicochemical properties of nanoscale carriers to enhance therapeutic efficacy whilst minimising systemic side effects. These formulations ...
DDS can be based on physical mechanisms like osmosis, diffusion, erosion, dissolution, and electro-transport or biochemical methods like monoclonal antibodies, gene therapy, vector systems, ...
UTIs are among the most common bacterial infections worldwide, but inappropriate use and overuse of antibiotics is driving ...
Ovarian cancer is one of the most common malignancies in women worldwide. Unlike breast cancer, ovarian cancer lacks early diagnostic markers and does not show noticeable symptoms until cancer ...
Nanoparticles enhance drug solubility, stability, and bioavailability, improving therapeutic outcomes for GI conditions like IBD through targeted delivery mechanisms. Hydrogel-based systems offer ...
A team of researchers has created an innovative drug delivery system with outstanding potential to improve drug development. A team of University of Melbourne researchers from the Caruso ...
The rise of AMR in pathogenic bacteria poses serious challenges to the control and management of infectious diseases. Globally, the rise of antimicrobial ...
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 ...
Drug delivery utilizes various methods and/or carriers to transport therapeutic agents to the tissue, organ, cell, or subcellular organ of interest for release and absorption. Some of the primary ...
In medical applications, nanotechnology advancements have positioned nanodiscs as valuable tools for diagnosing and treating various diseases. These disc-shaped particles can preserve membrane ...