The use of nanoparticles in drug delivery offers key advantages: they can enable targeted drug delivery, protect active ...
Triple-negative breast cancer (TNBC) is one of the most aggressive and treatment-resistant subtypes of breast cancer, ...
With the commercialization of mRNA vaccines against COVID-19, research and development into the application of mRNA in ...
Venous malformations are abnormally shaped veins that develop when the cells lining blood vessels grow too fast when they ...
Silver nanoparticles can precisely slice DNA and create longer “sticky ends,” helping genetic fragments join up to five times ...
Researchers developed a three-pronged strategy against hard-to-treat triple-negative breast cancer, targeting ...
Antimicrobial nanoparticles are materials with exceptional antimicrobial properties, capable of controlling bacterial, viral, and fungal infections. Thanks to their unique physicochemical attributes, ...
Two preclinical studies published in Science Translational Medicine suggest that the binding strength and structural ...
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, ...
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 ...