Nanoparticle technology offers significant market opportunities in pharmaceuticals and biomedicine, enhancing drug delivery, solubility, and targeted therapy. This field supports advancements in ...
Eye tumors are difficult to treat because drugs often struggle to reach tumor tissue without damaging healthy structures of ...
DNA nanotechnology is an interdisciplinary field that exploits the inherent base-pairing rules of DNA to design and assemble nanoscale structures with high precision. These engineered constructs have ...
Micro injection molding has become a cornerstone for mass-producing microfluidic devices, yet demolding defects and mold wear remain persistent challenges. This study introduces a nickel mold ...
The biodegradable polymer Poly (D,L-lactide-co-glycolic acid) (PLGA) is widely regarded as safe for use in medical applications, seeing common use in the creation of particles used in in vivo studies.
Magnetic nanoparticles exhibit a range of physical properties due to their small size and unique structure. Understanding and harnessing the physical properties of magnetic nanoparticles is essential ...
Antimicrobial nanoparticles are materials with exceptional antimicrobial properties, capable of controlling bacterial, viral, and fungal infections. Thanks to their unique physicochemical attributes, ...
Self-lubricating nickel mold with nano-fillers enables defect-free polymer microstructure production
New nickel-PTFE nanocomposite mold integrates lubricating particles directly into the matrix, achieving over 1,500 defect-free molding cycles without coatings for microfluidic devices. (Nanowerk News) ...
Eye tumors are difficult to treat because drugs often struggle to reach tumor tissue without damaging healthy structures of the eye. A new review ...
Cancer is one of humanity’s most formidable health challenges, claiming nearly 10 million lives each year, with global cases projected to rise to Cancer is one of humanity’s most formidable health ...
What are Metal Oxide Nanoparticles? Metal oxide nanoparticles are a class of nanomaterials composed of metal cations bonded to oxygen anions, with particle sizes ranging from 1 to 100 nanometers.
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