
nanotoxicology
Sign in to saveNanotoxicology is the study of the toxicity of nanomaterials. Because of quantum size effects and large surface area to volume ratio, nanomaterials have unique properties compared with their larger counterparts that affect their toxicity. Of the possible hazards, inhalation exposure appears to present the most concern, with animal studies showing pulmonary effects such as inflammation, fibrosis, and carcinogenicity for some nanomaterials. Skin contact and ingestion exposure are also a concern.
Wikidata facts
- Subclass of
- nanomedicine
Show 3 more facts
- Commons category
- Nanotoxicology
- practiced by
- toxicologist
- is the study of
- nanomaterial
via Wikidata · CC0
~19 min read
Encyclopedic overview
23 sectionsContents
- Background
- Properties that affect toxicity
- Composition
- Metal-based
- Carbon-based
- Other
- Size
- Dispersion state
- Surface chemistry and charge
- Routes of administration
- Respiratory
- Dermal
- Gastrointestinal
- Biodistribution
- Mechanisms of toxicity
- Oxidative stress
- Cytotoxicity
- Genotoxicity
- Methods and standards
- Policy and regulatory aspects
- See also
- References
- External links
Nanotoxicology is the study of the toxicity of nanomaterials. Because of quantum size effects and large surface area to volume ratio, nanomaterials have unique properties compared with their larger counterparts that affect their toxicity. Of the possible hazards, inhalation exposure appears to present the most concern, with animal studies showing pulmonary effects such as inflammation, fibrosis, and carcinogenicity for some nanomaterials. Skin contact and ingestion exposure are also a concern.
==Background== Nanomaterials have at least one primary dimension of less than 100 nanometers, and often have properties different from those of their bulk components that are technologically useful. Because nanotechnology is a recent development, the health and safety effects of exposures to nanomaterials, and what levels of exposure may be acceptable, is not yet fully understood. Nanoparticles can be divided into combustion-derived nanoparticles (like diesel soot), manufactured nanoparticles like carbon nanotubes and naturally occurring nanoparticles from volcanic eruptions, atmospheric chemistry etc. Typical nanoparticles that have been studied are titanium dioxide, alumina, zinc oxide, carbon black, carbon nanotubes, and buckminsterfullerene.
Excerpted from Wikipedia’s “nanotoxicology” article, available under the CC BY-SA 4.0 licence.