Investigating EV production and purification methods by mimicking the natural release process of EVs in blood capillaries with a bioinspired mechanical microfluidic method.
Investigating EV production and purification methods by mimicking the natural release process of EVs in blood capillaries with a bioinspired mechanical microfluidic method.
3D-printed transparent glass is prepared using a two-step method that shows promise for the creation of glass optics as well as intricate glass structures.
Accurate pulse and oxygenation data can be obtained through multicolor PLEDs on one flexible substrate fabricated by a surface energy patterning assisted blade coating technique.
Cancer is a disease that is responsible for an overwhelming number of deaths worldwide. The conventional therapeutic approaches used for treatment can be ineffective. inducing prominent side effects.
A new review highlights progress in nanophotonic optical trapping and manipulation technologies with a focus on high-throughput applications in the biosciences.
Novel highly efficient polymer solar cells show great promise for large-scale production.
Assembling two types of carbon nanostructures with non-covalent interactions gives an electrode material with enhanced energy density.
Nanotechnology possesses great potential to overcome shortcomings of existing strategies for safe and effective retinal drug delivery.
This hydrogel can be programmed to reversibly switch its mechanical properties in response to a simple environmental cue.
Sperm cells are attractive as propulsion sources or as functional components in robotic microswimmers to realize complex tasks in the body.