Titanium dioxide nanoparticles: a review of current toxicological data

Наночастицы диоксида титана: обзор современных токсикологических данных
Hongbo Shi, Ruth Magaye, Vincent Castranova, Jinshun Zhao
2013-04-15

inhalation exposurelung tumorsnanoparticle toxicologysystemic organ translocationtitanium dioxide nanoparticles
Titanium dioxide (TiO2) nanoparticles (NPs) are manufactured worldwide in large quantities for use in a wide range of applications. TiO2 NPs possess different physicochemical properties compared to their fine particle (FP) analogs, which might alter their bioactivity. Most of the literature cited here has focused on the respiratory system, showing the importance of inhalation as the primary route for TiO2 NP exposure in the workplace. TiO2 NPs may translocate to systemic organs from the lung and gastrointestinal tract (GIT) although the rate of translocation appears low. There have also been studies focusing on other potential routes of human exposure. Oral exposure mainly occurs through food products containing TiO2 NP-additives. Most dermal exposure studies, whether in vivo or in vitro, report that TiO2 NPs do not penetrate the stratum corneum (SC). In the field of nanomedicine, intravenous injection can deliver TiO2 nanoparticulate carriers directly into the human body. Upon intravenous exposure, TiO2 NPs can induce pathological lesions of the liver, spleen, kidneys, and brain. We have also shown here that most of these effects may be due to the use of very high doses of TiO2 NPs. There is also an enormous lack of epidemiological data regarding TiO2 NPs in spite of its increased production and use. However, long-term inhalation studies in rats have reported lung tumors. This review summarizes the current knowledge on the toxicology of TiO2 NPs and points out areas where further information is needed.
1
Epidemiological evidence remains scarce, while long-term inhalation studies in rats have reported lung tumors, highlighting the need for further toxicological research.
2
Inhalation is identified as the primary occupational exposure route, with studies mainly focusing on respiratory effects.
3
Intravenous exposure has been associated with pathological lesions in the liver, spleen, kidneys, and brain, although many reported effects may reflect very high experimental doses.
4
Most dermal studies indicate that TiO2 nanoparticles do not penetrate the skin’s stratum corneum, whereas oral exposure commonly occurs through nanoparticle-containing food additives.
5
TiO2 nanoparticles have physicochemical properties distinct from fine particles, potentially altering their biological activity and toxicity.
6
TiO2 nanoparticles may translocate from the lungs and gastrointestinal tract to systemic organs, but reported translocation rates are generally low.

titanium dioxide (TiO2) nanoparticles

the toxicological effects, exposure routes, tissue translocation, and health risks of TiO2 nanoparticles

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2013-04-15
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Hongbo Shi
Ruth Magaye
Vincent Castranova
Jinshun Zhao
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