Layered drug nanoparticles can now be produced efficiently and at scale using a microfluidic method that eliminates purification and improves consistency. Since its adaptation to nanoscale materials, ...
Microfluidic mixing techniques and devices are pivotal in advancing applications ranging from chemical synthesis to biomedical diagnostics. In these systems, liquids or gases are combined in channels ...
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Acoustofluidics offers advantages over other microfluidics methods, such as low cost, simplified designs, and remote droplet manipulation. These are especially relevant for applications like ...
When synthesizing nanoscale liposomes, the ability to control vesicle size helps define their pharmaceutical properties. Conventional microfluidic liposome synthesis methods, however, are limited in ...
Microfluidics involves fluid manipulation and control at a submillimeter scale within microfabricated channels etched on a chip, forming a miniature laboratory capable of performing complex analytical ...
The primary components of LNP–RNA are ionizable lipids, cholesterol, PEGylated lipids, and phospholipids, which together form the nanoparticle, along with the active pharmaceutical ingredient, RNA.
CAMBRIDGE, MA -- Polymer-coated nanoparticles loaded with therapeutic drugs show significant promise for cancer treatment, including ovarian cancer. These particles can be targeted directly to tumors, ...
Lipopolyplexes are emerging as effective, second-generation, nonviral vectors to deliver gene therapies, yet there are challenges. To resolve them, researchers at the University of Milan have ...
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