Although most experimental data suggest that exposure to nanomaterials may be dangerous, the matter of their toxicity in humans is still unresolved. A key question is whether they may be more toxic than their bulk counterpart. To clarify this issue, we perform an in-depth analysis of size-related toxicological properties and discuss the pathogenetic pathways activated by oxidative and non-oxidative stress. In addition, new insights on the complex molecular inter-relationships arising from 'omics' are examined, in light of the information they can provide on specific intracellular events elicited by nanomaterials. Finally, we describe the mechanism of action of fibre-like nanomaterials. © 2014 Woodhead Publishing Limited. All rights reserved
With the development of nanotechnology, a growing number of people are expected to be exposed to its...
The increasingly widespread use of engineered nanomaterials in many applications increases the need ...
Nanotechnology has great potential to significantly advance the biomedical field for the benefit of ...
Although most experimental data suggest that exposure to nanomaterials may be dangerous, the matter ...
The recent design and development of nanosized particulate materials, generally termed as nanomateri...
AbstractNanotechnology is a rapidly developing field in the 21st century, and the commercial use of ...
In the last decade, nanomaterials have become a double-edged sword. On one hand, nanomaterials have ...
The explosion of study of nanomaterials in biological applications (the nano–bio interface) can be a...
Nanotechnologies are emerging as highly promising technologies in many sectors in the society. Howev...
Nanomaterials (NMs) with the same chemistry can greatly differ by size, surface area, shape, stabili...
The increased use of and interest in nanoparticles (NPs) have resulted in an enormous amount of NPs ...
Introduction and Background: Nanotechnology is one of the fastest growing technologies in the curren...
Toxicological information on nanomaterials (NMs) is of major importance for safety assessment, since...
In the context of the exponential development and production worldwide of engineered nanomaterials, ...
With the development of nanotechnology, a growing number of people are expected to be exposed to its...
The increasingly widespread use of engineered nanomaterials in many applications increases the need ...
Nanotechnology has great potential to significantly advance the biomedical field for the benefit of ...
Although most experimental data suggest that exposure to nanomaterials may be dangerous, the matter ...
The recent design and development of nanosized particulate materials, generally termed as nanomateri...
AbstractNanotechnology is a rapidly developing field in the 21st century, and the commercial use of ...
In the last decade, nanomaterials have become a double-edged sword. On one hand, nanomaterials have ...
The explosion of study of nanomaterials in biological applications (the nano–bio interface) can be a...
Nanotechnologies are emerging as highly promising technologies in many sectors in the society. Howev...
Nanomaterials (NMs) with the same chemistry can greatly differ by size, surface area, shape, stabili...
The increased use of and interest in nanoparticles (NPs) have resulted in an enormous amount of NPs ...
Introduction and Background: Nanotechnology is one of the fastest growing technologies in the curren...
Toxicological information on nanomaterials (NMs) is of major importance for safety assessment, since...
In the context of the exponential development and production worldwide of engineered nanomaterials, ...
With the development of nanotechnology, a growing number of people are expected to be exposed to its...
The increasingly widespread use of engineered nanomaterials in many applications increases the need ...
Nanotechnology has great potential to significantly advance the biomedical field for the benefit of ...