In an effort to overcome barriers to the treatment of glioblastoma (GBM), targeted nanotherapeutics have emerged as promising drug delivery systems with the potential to improve pharmacokinetic profiles and therapeutic efficacy.
In an effort to overcome barriers to the treatment of glioblastoma (GBM), targeted nanotherapeutics have emerged as promising drug delivery systems with the potential to improve pharmacokinetic profiles and therapeutic efficacy.
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Researchers from the Massachusetts Institute of Technology, USA have introduced a simple strategy for making nanoparticles by the sonofragmentation of high‐aspect‐ratio 1D substrates.
Researchers from Finland and the USA, have developed two multistage nanovaccines constructed of two biomaterials and either a biological cancer cell membrane (CCM) or a model antigen
Magnetic bacteria devices can manipulate light similar to liquid crystals in display and spatial light modulator technology.
Magnetically steerable, acid-resistant micromotors are developed that can be fabricated by electrostatic attraction between magnetite nanoparticles and gold microrods at pH ≈ 4.
Nano- and micro-particulate vaccine delivery systems minimize side effects, trigger targeted and robust immune responses, and protect and stabilize vaccine components
Researchers are applying nanotechnology to cancer immunotherapy toward the development of nanocarriers for delivery of cancer vaccines and chemo-immunotherapies.
The majority of the developed bio-systems based on 2D transition metal dichalcogenides are reviewed in Small.
Silver nanoparticles are a more effective cancer treatment in immune competent mice.