Colloidal nanoparticles designed for the interactions with cells are very small, nanoscale objects usually consisting of inorganic cores and organic shells that are dispersed in a buffer or biological medium. By tuning the material properties of the nanoparticles a number of different biological applications of nanomaterials are enabled i.e. targeting, labelling, drug delivery, use as diagnostic tools or therapy. For all biological applications of nanoparticles, it is important to understand their interactions with the surrounding biological environment in order to predict their biological impact, in particular when designing the nanoparticles for diagnostic and therapeutic purpose. Due to the high surface-to-volume ratio, the surface of na...
The utilization of nanomaterials in the biological and medical field is quickly progressing, particu...
Nanotechnology is a new, interdisciplinary field of science, the products of which are nanoparticles...
Progress in utilizing inorganic nanoparticles for biomedical applications has advanced rapidly due t...
The application of nanobiomaterials in biomedical field is rapidly processing, especially in the are...
Understanding and controlling the biological response to nanoparticles is essential to designing saf...
The application of nanotechnology in medicine signifies one of the most exciting developments in sci...
It has long been acknowledged that parameters such as nanoparticlesize, shape, and surface charge pl...
Abstract Nanomaterials (NMs) have abundant applications in areas such as electronics, energy, enviro...
Interaction of nanoparticles with proteins is the basis of nanoparticle bio-reactivity. This interac...
The endogenous transport mechanisms which occur in living organisms have evolved to allow selective ...
The search for understanding the interactions of nanosized materials with living organisms is leadin...
Biological response to presence of gold and silica nanoparticles is extensively researched area of s...
Nanotechnology in drug delivery involves the use of materials at nanoscale range to deliver therapeu...
The wide variety of core materials available, coupled with tunable surface properties, make nanopart...
Nowadays, nanomaterials have become an emerging field that has shown great promise in the developmen...
The utilization of nanomaterials in the biological and medical field is quickly progressing, particu...
Nanotechnology is a new, interdisciplinary field of science, the products of which are nanoparticles...
Progress in utilizing inorganic nanoparticles for biomedical applications has advanced rapidly due t...
The application of nanobiomaterials in biomedical field is rapidly processing, especially in the are...
Understanding and controlling the biological response to nanoparticles is essential to designing saf...
The application of nanotechnology in medicine signifies one of the most exciting developments in sci...
It has long been acknowledged that parameters such as nanoparticlesize, shape, and surface charge pl...
Abstract Nanomaterials (NMs) have abundant applications in areas such as electronics, energy, enviro...
Interaction of nanoparticles with proteins is the basis of nanoparticle bio-reactivity. This interac...
The endogenous transport mechanisms which occur in living organisms have evolved to allow selective ...
The search for understanding the interactions of nanosized materials with living organisms is leadin...
Biological response to presence of gold and silica nanoparticles is extensively researched area of s...
Nanotechnology in drug delivery involves the use of materials at nanoscale range to deliver therapeu...
The wide variety of core materials available, coupled with tunable surface properties, make nanopart...
Nowadays, nanomaterials have become an emerging field that has shown great promise in the developmen...
The utilization of nanomaterials in the biological and medical field is quickly progressing, particu...
Nanotechnology is a new, interdisciplinary field of science, the products of which are nanoparticles...
Progress in utilizing inorganic nanoparticles for biomedical applications has advanced rapidly due t...