971
Views
80
CrossRef citations to date
0
Altmetric
Orginal Articles

Bioaccumulation of silver nanoparticles into Daphnia magna from a freshwater algal diet and the impact of phosphate availability

, , &
Pages 305-316 | Received 06 Jun 2012, Accepted 11 Feb 2013, Published online: 19 Mar 2013

References

  • Asharani PV, Wu YL, Gong ZY, Valiyaveettil S. 2008. Toxicity of silver nanoparticles in zebrafish models. Nanotechnology 19:255102.
  • Barata C, Markich SJ, Baird DJ, Soares A. 2002. The relative importance of water and food as cadmium sources to Daphnia magna Straus. Aquat Toxicol 61:143–154.
  • Behra R, Wagner B, Szivak I, Piccapietra F, Sigg L, Handschin S, 2009. Uptake of silver nanoparticles in Chlamydomonas reinhardtii. In: Pabst MA, Zellnig G, editors. Proceedings of MC2009. Vol. 2 Life Science. Graz: Verlag der TU. pp 183–184.
  • Bystrzejewska-Piotrowska G, Golimowski J, Urban PL. 2009. Nanoparticles: their potential toxicity, waste and environmental management. Waste Manage 29:2587–2595.
  • Charan S, Chien FC, Singh N, Kuo CW, Chen PL. 2011. Development of lipid targeting Raman probes for in vivo imaging of Caenorhabditis elegans. Chem Eur J 17:5165–5170.
  • Cong Y, Banta GT, Selck H, Berhanu D, Valsami-Jones E, Forbes VE. 2011. Toxic effects and bioaccumulation of nano-, micron- and ionic-Ag in the polychaete, Nereis diversicolor. Aquat Toxicol 105:403–411.
  • Dean AP, Nicholson JM, Sigee DC. 2008. Impact of phosphorus quota and growth phase on carbon allocation in Chlamydomonas reinhardtii: an FTIR microspectroscopy study. Eur J Phycol 43:345–354.
  • Dean AP, Nicholson JM, Sigee DC. 2012. Changing patterns of carbon allocation in lake phytoplankton: an FTIR analysis. Hydrobiologia 684:109–127.
  • Dean AP, Sigee DC, Estrada B, Pittman JK. 2010. Using FTIR spectroscopy for rapid determination of lipid accumulation in response to nitrogen limitation in freshwater microalgae. Bioresour Technol 101:4499–4507.
  • Evens R, De Schamphelaere K, De Laender F, Janssen C. 2012. The effects of Zn-contaminated diets on Daphnia magna reproduction may be related to Zn-induced changes of the dietary P content rather than to the dietary Zn content itself. Aquat Toxicol 110–111:9–16.
  • Evens R, De Schamphelaere KAC, Janssen CR. 2009. The effects of dietary nickel exposure on growth and reproduction of Daphnia magna. Aquat Toxicol 94:138–144.
  • Fortin C, Campbell PGC. 2001. Thiosulfate enhances silver uptake by a green alga: role of anion transporters in metal uptake. Environ Sci Technol 35:2214–2218.
  • Geranio L, Heuberger M, Nowack B. 2009. The behavior of silver nanotextiles during washing. Environ Sci Technol 43:8113–8118.
  • Gondikas AP, Morris A, Reinsch BC, Marinakos SM, Lowry GV, Hsu-Kim H. 2012. Cysteine-induced modifications of zero-valent silver nanomaterials: implications for particle surface chemistry, aggregation, dissolution, and silver speciation. Environ Sci Technol 46:7037–7045.
  • Gustafsson JP. 2010. Visual MINTEQ ver. 3.0. Department of Land and Water Resources Engineering, The Royal Institute of Technology, Sweden. http://www.lwr.kth.se/English/OurSoftware/vminteq/. Accessed on 31 March 2012.
  • Handy RD, von der Kammer F, Lead JR, Hassellov M, Owen R, Crane M. 2008. The ecotoxicology and chemistry of manufactured nanoparticles. Ecotoxicology 17:287–314.
  • Hansen SF, Michelson ES, Kamper A, Borling P, Stuer-Lauridsen F, Baun A. 2008. Categorization framework to aid exposure assessment of nanomaterials in consumer products. Ecotoxicology 17:438–447.
  • Harris EH. 1989. The Chlamydomonas Sourcebook. San Diego: Academic Press.
  • Hassler CS, Slaveykova VI, Wilkinson KJ. 2004. Discriminating between intra- and extracellular metals using chemical extractions. Limnol Oceanogr Methods 2:237–247.
  • He D, Dorantes-Aranda JJ, Waite TD. 2012. Silver nanoparticle-algae interactions: oxidative dissolution, reactive oxygen species generation and synergistic toxic effects. Environ Sci Technol 46:8731–8738.
  • Hudson JJ, Taylor WD, Schindler DW. 2000. Phosphate concentrations in lakes. Nature 406:54–56.
  • Ji YC, Sherrell RM. 2008. Differential effects of phosphorus limitation on cellular metals in Chlorella and Microcystis. Limnol Oceanogr 53:1790–1804.
  • Kim B, Park CS, Murayama M, Hochella MF. 2010. Discovery and characterization of silver sulfide nanoparticles in final sewage sludge products. Environ Sci Technol 44:7509–7514.
  • Kim J, Kim S, Lee S. 2011. Differentiation of the toxicities of silver nanoparticles and silver ions to the Japanese medaka (Oryzias latipes) and the cladoceran Daphnia magna. Nanotoxicology 5:208–214.
  • Lee DY, Fortin C, Campbell PGC. 2005. Contrasting effects of chloride on the toxicity of silver to two green algae, Pseudokirchneriella subcapitata and Chlamydomonas reinhardtii. Aquat Toxicol 75:127–135.
  • Lee Y-J, Kim J, Oh J, Bae S, Lee S, Hong IS, 2012. Ion-release kinetics and ecotoxicity effects of silver nanoparticles. Environ Toxicol Chem 31:155–159.
  • Miao AJ, Luo ZP, Chen CS, Chin WC, Santschi PH, Quigg A. 2010. Intracellular uptake: a possible mechanism for silver engineered nanoparticle toxicity to a freshwater alga Ochromonas danica. PLoS ONE 5:e15196.
  • Mitrano DM, Lesher EK, Bednar A, Monserud J, Higgins CP, Ranville JF. 2012. Detecting nanoparticulate silver using single-particle inductively coupled plasma-mass spectrometry. Environ Toxicol Chem 31:115–121.
  • Navarro E, Piccapietra F, Wagner B, Marconi F, Kaegi R, Odzak N, 2008. Toxicity of silver nanoparticles to Chlamydomonas reinhardtii. Environ Sci Technol 42:8959–8964.
  • Park S, Brett MT, Muller-Navarra DC, Goldman CR. 2002. Essential fatty acid content and the phosphorus to carbon ratio in cultured algae as indicators of food quality for Daphnia. Freshwat Biol 47:1377–1390.
  • Park S-Y, Choi J. 2010. Geno- and ecotoxicity evaluation of silver nanoparticles in freshwater crustacean Daphnia magna. Environ Eng Res 15:23–27.
  • Piccapietra F, Allue CG, Sigg L, Behra R. 2012. Intracellular silver accumulation in Chlamydomonas reinhardtii upon exposure to carbonate coated silver nanoparticles and silver nitrate. Environ Sci Technol 46:7390–7397.
  • Scown TM, Santos EM, Johnston BD, Gaiser B, Baalousha M, Mitov S, 2010. Effects of aqueous exposure to silver nanoparticles of different sizes in rainbow trout. Toxicol Sci 115:521–534.
  • Webster RE, Dean AP, Pittman JK. 2011. Cadmium exposure and phosphorus limitation increases metal content in the freshwater alga Chlamydomonas reinhardtii. Environ Sci Technol 45:7489–7496.
  • White PJ, Hammond JP. 2009. The sources of phosphorus in the waters of Great Britain. J Environ Qual 38:13–26.
  • Xiu Z-M, Ma J, Alvarez PJJ. 2011. Differential effect of common ligands and molecular oxygen on antimicrobial activity of silver nanoparticles versus silver ions. Environ Sci Technol 45:9003–9008.
  • Zhao C-M, Wang W-X. 2010. Biokinetic uptake and efflux of silver nanoparticles in Daphnia magna. Environ Sci Technol 44:7699–7704.
  • Zhao C-M, Wang W-X. 2011. Comparison of acute and chronic toxicity of silver nanoparticles and silver nitrate to Daphnia magna. Environ Toxicol Chem 30:885–892.
  • Zhao C-M, Wang W-X. 2012. Importance of surface coatings and soluble silver in silver nanoparticles toxicity to Daphnia magna. Nanotoxicology 6:361–370.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.