Toxicity of Ag, CuO and ZnO nanoparticles to selected environmentally relevant test organisms and mammalian cells in vitro: a critical review
Токсичность наночастиц Ag, CuO и ZnO для выбранных экологически значимых тест-организмов и клеток млекопитающих in vitro: критический обзор
2013-05-31
SCID: 54.1/jdckyayc
Discuss with AI
CuO nanoparticlesL(E)C50 and MIC valuesZnO nanoparticlesnanoparticle ecotoxicitysilver nanoparticles
Figures from the paper
Abstract (AI)
Nanoparticles (NPs) of copper oxide (CuO), zinc oxide (ZnO) and especially nanosilver are intentionally used to fight the undesirable growth of bacteria, fungi and algae. Release of these NPs from consumer and household products into waste streams and further into the environment may, however, pose threat to the 'non-target' organisms, such as natural microbes and aquatic organisms. This review summarizes the recent research on (eco)toxicity of silver (Ag), CuO and ZnO NPs. Organism-wise it focuses on key test species used for the analysis of ecotoxicological hazard. For comparison, the toxic effects of studied NPs toward mammalian cells in vitro were addressed. Altogether 317 L(E)C50 or minimal inhibitory concentrations (MIC) values were obtained for algae, crustaceans, fish, bacteria, yeast, nematodes, protozoa and mammalian cell lines. As a rule, crustaceans, algae and fish proved most sensitive to the studied NPs. The median L(E)C50 values of Ag NPs, CuO NPs and ZnO NPs (mg/L) were 0.01, 2.1 and 2.3 for crustaceans; 0.36, 2.8 and 0.08 for algae; and 1.36, 100 and 3.0 for fish, respectively. Surprisingly, the NPs were less toxic to bacteria than to aquatic organisms: the median MIC values for bacteria were 7.1, 200 and 500 mg/L for Ag, CuO and ZnO NPs, respectively. In comparison, the respective median L(E)C50 values for mammalian cells were 11.3, 25 and 43 mg/L. Thus, the toxic range of all the three metal-containing NPs to target- and non-target organisms overlaps, indicating that the leaching of biocidal NPs from consumer products should be addressed.
Key Findings
1
Crustaceans, algae, and fish were generally the most sensitive test organisms to the studied nanoparticles.
2
Median crustacean L(E)C50 values were 0.01, 2.1, and 2.3 mg/L for Ag, CuO, and ZnO nanoparticles, respectively.
3
Nanoparticles were less toxic to bacteria than aquatic organisms, with median bacterial MICs of 7.1, 200, and 500 mg/L for Ag, CuO, and ZnO, respectively.
4
The overlapping toxicity ranges for target and non-target organisms indicate that nanoparticle leaching from biocidal consumer products warrants environmental attention.
5
The review compiles 317 L(E)C50 or MIC values describing Ag, CuO, and ZnO nanoparticle toxicity across environmental organisms and mammalian cell lines.
Research Object
Ag, CuO, and ZnO nanoparticles and their effects on environmentally relevant organisms and mammalian cells in vitro
Research Subject
Comparative toxicity and sensitivity across aquatic organisms, microbes, and mammalian cell lines, quantified by L(E)C50 and MIC values
Publication Details
Publication Date
2013-05-31
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest