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Toxicity of engineered nanomaterials to aquatic and land snails: A scientometric and systematic review

Caixeta, M. B. and Araújo, P. S. and Gonçalves, B. B. and Silva, L. D. and Grano-Maldonado, M. I. and Rocha, T. L.

Chemosphere (2020) 260: 127654

DOI: 10.1016/j.chemosphere.2020.127654

Abstract

The emerging growth of nanotechnology has attracted great attention due to its application in the parasite and intermediate host control. However, the knowledge concerning the mechanism of action (MoA) and toxicity of nanomaterials (NMs) to snails remain unclear. In this context, the present study revised the historical use of snails as experimental models in nanotoxicological studies and summarized the MoA and toxicity of NMs in aquatic and land snails. The data concerning the bioaccumulation, reproductive and transgenerational toxicity, embryotoxicity, genotoxicity and potential molluscicidal activity of NMs were revised. Furthermore, the data about the experimental conditions, such as exposure time, concentrations, cell and tissue-specific responses, snail species and nanoparticle types are discussed. Revised data showed that the toxic effects of NMs were reported for 21 snail species with medical, veterinary and ecological importance. The NM toxicity to snails is dependent on the physical and chemical properties of NMs, as well as their environmental transformation and experimental design. The NM bioaccumulation on snails was related to several toxic effects, such as reactive oxygen species (ROS) production, oxidative stress, following by oxidative damage to DNA, lipids and proteins. The NM metabolism in snails remains unknown. Results showed the potential use of NMs in the snail control program. Also, significant research gaps and recommendations for future researches are indicated. The present study confirms that snails are suitable invertebrate model system to assess the nanotoxicity.

Citation

Caixeta, M. B., Araújo, P. S., Gonçalves, B. B., Silva, L. D., Grano-Maldonado, M. I., & Rocha, T. L. (2020). Toxicity of engineered nanomaterials to aquatic and land snails: A scientometric and systematic review. Chemosphere, 260, 127654. https://doi.org/10.1016/j.chemosphere.2020.127654 Animals, Biomarker, Reactive Oxygen Species/metabolism, Snail, Oxidative Stress/drug effects, Ecotoxicology, DNA Damage, Water Pollutants, Chemical/*toxicity, competing financial interests or personal relationships that could have appeared to, influence the work reported in this paper., Aquatic Organisms, Molluscacides, Molluscicide, Nanoparticle, Nanostructures/chemistry/*toxicity, Nanotechnology, Nanotoxicology

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