Literature DB >> 23619766

Cerium oxide nanoparticles are more toxic than equimolar bulk cerium oxide in Caenorhabditis elegans.

M C Arnold1, A R Badireddy, M R Wiesner, R T Di Giulio, J N Meyer.   

Abstract

Engineered cerium oxide nanoparticles (CeO2 NPs) are widely used in biomedical and engineering manufacturing industries. Previous research has shown the ability of CeO2 NPs to act as a redox catalyst, suggesting potential to both induce and alleviate oxidative stress in organisms. In this study, Caenorhabditis elegans and zebrafish (Danio rerio) were dosed with commercially available CeO2 NPs. Non-nano cerium oxide powder (CeO2) was used as a positive control for cerium toxicity. CeO2 NPs suspended in standard United States Environmental Protection Agency reconstituted moderately hard water, used to culture the C. elegans, quickly formed large polydisperse aggregates. Dosing solutions were renewed daily for 3 days. Exposure of wild-type nematodes resulted in dose-dependent growth inhibition detected for all 3 days (p < 0.0001). Non-nano CeO2 also caused significant growth inhibition (p < 0.0001), but the scale of inhibition was less at equivalent mass exposures compared with CeO2 NP exposure. Some metal and oxidative stress-sensitive mutant nematode strains showed mildly altered growth relative to the wild-type when dosed with 5 mg/L CeO2 NPs on days 2 and 3, thus providing weak evidence for a role for oxidative stress or metal sensitivity in CeO2 NP toxicity. Zebrafish microinjected with CeO2 NPs or CeO2 did not exhibit increased gross developmental defects compared with controls. Hyperspectral imaging showed that CeO2 NPs were ingested but not detectable inside the cells of C. elegans. Growth inhibition observed in C. elegans may be explained at least in part by a non-specific inhibition of feeding caused by CeO2 NPs aggregating around bacterial food and/or inside the gut tract.

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Year:  2013        PMID: 23619766     DOI: 10.1007/s00244-013-9905-5

Source DB:  PubMed          Journal:  Arch Environ Contam Toxicol        ISSN: 0090-4341            Impact factor:   2.804


  15 in total

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6.  Materials and toxicological approaches to study metal and metal-oxide nanoparticles in the model organism Caenorhabditis elegans.

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8.  Assessing different mechanisms of toxicity in mountaintop removal/valley fill coal mining-affected watershed samples using Caenorhabditis elegans.

Authors:  Elena A Turner; Gretchen L Kroeger; Mariah C Arnold; B Lila Thornton; Richard T Di Giulio; Joel N Meyer
Journal:  PLoS One       Date:  2013-09-16       Impact factor: 3.240

9.  Cerium oxide nanoparticle aggregates affect stress response and function in Caenorhabditis elegans.

Authors:  Steven Rogers; Kevin M Rice; Nandini Dpk Manne; Tolou Shokuhfar; Kun He; Vellaisamy Selvaraj; Eric R Blough
Journal:  SAGE Open Med       Date:  2015-03-19

10.  Transport of cerium oxide nanoparticles in saturated silica media: influences of operational parameters and aqueous chemical conditions.

Authors:  Zhaohan Zhang; Peng Gao; Ye Qiu; Guohong Liu; Yujie Feng; Mark Wiesner
Journal:  Sci Rep       Date:  2016-10-03       Impact factor: 4.379

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