Literature DB >> 32391155

Assessment of Cu and CuO nanoparticle ecological responses using laboratory small-scale microcosms.

Fan Wu1,2, Bryan J Harper3, Lauren E Crandon2, Stacey L Harper2,3,4.   

Abstract

Copper based nanoparticles (NPs) are used extensively in industrial and commercial products as sensors, catalysts, surfactants, antimicrobials, and for other purposes. The high production volume and increasing use of copper-based NPs make their ecological risk a concern. Commonly used copper-based NPs are composed of metallic copper or copper oxide (Cu and CuO NPs); however, their environmental toxicity can vary dramatically depending on their physico-chemical properties, such as dissolution, aggregation behavior, and the generation of reactive oxygen species. Here, we investigated the NP dissolution, organismal uptake and aquatic toxicity of Cu and CuO NPs at 0, 0.1, 1, 5 or 10 mg Cu/L using a previously developed multi-species microcosm. This 5-day microcosm assay was comprised of C. reinhardtti, E. coli, D. magna, and D. rerio. We hypothesized that Cu and CuO NPs can elicit differential toxicity to the organisms due to alterations in particle dissolution and variations in organismal uptake. The actual concentrations of dissolved Cu released from the NPs were compared to ionic copper controls (CuCl2) at the same concentrations to determine the relative contribution of particulate and dissolved Cu on organism uptake and toxicity. We found that both NPs had higher uptake in D. magna and zebrafish than equivalent ionic exposures, suggesting that both Cu-based NPs are taken up by organisms. Cu NP exposures significantly inhibited algal growth rate, D. magna survival, and zebrafish hatching while exposure to equivalent concentrations of CuCl2 (dissolved Cu fraction) and CuO NPs did not. This indicates that Cu NPs themselves likely elicited a particle-specific mechanism of toxicity to the test organisms, or a combination effect from ionic Cu and the Cu NPs. Overall, this work was the first study to utilize a small-scale rapid assay designed to evaluate the fate and ecotoxicological impacts of Cu and CuO NPs in a mixed aquatic community.

Entities:  

Keywords:  community; copper; copper oxide; dissolution; toxicity; uptake

Year:  2019        PMID: 32391155      PMCID: PMC7211403          DOI: 10.1039/c9en01026b

Source DB:  PubMed          Journal:  Environ Sci Nano


  6 in total

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Review 4.  Ecological Drawbacks of Nanomaterials Produced on an Industrial Scale: Collateral Effect on Human and Environmental Health.

Authors:  H Pérez-Hernández; A Pérez-Moreno; C R Sarabia-Castillo; S García-Mayagoitia; G Medina-Pérez; F López-Valdez; R G Campos-Montiel; P Jayanta-Kumar; F Fernández-Luqueño
Journal:  Water Air Soil Pollut       Date:  2021-10-12       Impact factor: 2.520

5.  Experimental and Computational Studies on the Interaction of a Dansyl-Based Fluorescent Schiff Base Ligand with Cu2+ Ions and CuO NPs.

Authors:  Jesús Sanmartín-Matalobos; Pilar Bermejo-Barrera; Ignacio Pérez-Juste; Matilde Fondo; Ana M García-Deibe; Yeneva Alves-Iglesias
Journal:  Int J Mol Sci       Date:  2022-09-30       Impact factor: 6.208

6.  Biogenic Synthesis of Copper Nanoparticles Using Bacterial Strains Isolated from an Antarctic Consortium Associated to a Psychrophilic Marine Ciliate: Characterization and Potential Application as Antimicrobial Agents.

Authors:  Maria Sindhura John; Joseph Amruthraj Nagoth; Marco Zannotti; Rita Giovannetti; Alessio Mancini; Kesava Priyan Ramasamy; Cristina Miceli; Sandra Pucciarelli
Journal:  Mar Drugs       Date:  2021-05-08       Impact factor: 5.118

  6 in total

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