Internalization of Consumed Nanoparticles by a Model Invertebrate Organism

Author:

Novak Sara1,Drobne Damjana123,Valant Janez1,Pelicon Primož4

Affiliation:

1. Department of Biology, Biotechnical Faculty, University of Ljubljana, 1000 Ljubljana, Slovenia

2. Centre of Excellence in Advanced Materials and Technologies for the Future (CO NAMASTE), 1000 Ljubljana, Slovenia

3. Centre of Excellence in Nanoscience and Nanotechnology (CO Nanocenter), 1000 Ljubljana, Slovenia

4. Department of Low and Medium Energy Physics, Jozef Stefan Institute, 1000 Ljubljana, Slovenia

Abstract

There is littlein vivodata concerning the fate of ingested TiO2nanoparticles (nano-TiO2). We report here experiments aimed at assessing if ingested nano-TiO2accumulates in the digestive gland epithelium or are internalized elsewhere in the body of the terrestrial isopod crustaceans. The animals (Porcellio scaber, Isopoda, Crustacea) fed for 3, 7, or 14 days on food dosed with 100 or 1000 μg nano-TiO2showed no evidence of internalization of Ti measured by microparticle-induced X-ray emission method. The effect of ingested nanoparticles was measured by conventional toxicity measures such as feeding rate, weight change, and mortality and did not indicate any toxicity. However, cell membrane of digestive glands, measured with a modified method for assessing cell membrane stability, was affected already after 3 days of exposure to 1000 μg nano-TiO2per gram dry weight of food indicating cytotoxic potential of ingested nanoparticles. Our results confirmed hypothesis on low toxic potential and no internalization of consumed TiO2nanoparticles by a model invertebrate organism. However, cytological marker unequivocally indicated adverse effect of ingested nano-TiO2. We conclude that the isopod model system could be used for studying the fate and effect of ingested nanoparticles.

Publisher

Hindawi Limited

Subject

General Materials Science

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