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Aquatic Toxicity Comparison of Silver Nanoparticles and Silver Nanowires 원문보기

BioMed research international, v.2015, 2015년, pp.893049 -   

Sohn, Eun Kyung (Institute of Nanoproduct Safety Research, Hoseo University, Asan, Republic of Korea) ,  Johari, Seyed Ali (Fisheries Department, Natural Resources Faculty, University of Kurdistan, P.O. Box 416, Sanandaj 66177-15175, Iran) ,  Kim, Tae Gyu (Institute of Nanoproduct Safety Research, Hoseo University, Asan, Republic of Korea) ,  Kim, Jin Kwon (Institute of Nanoproduct Safety Research, Hoseo University, Asan, Republic of Korea) ,  Kim, Ellen (Institute of Nanoproduct Safety Research, Hoseo University, Asan, Republic of Korea) ,  Lee, Ji Hyun (Institute of Nanoproduct Safety Research, Hoseo University, Asan, Republic of Korea) ,  Chung, Young Shin (Institute of Nanoproduct Safety Research, Hoseo University, Asan, Republic of Korea) ,  Yu, Il Je (Institute of Nanoproduct Safety Research, Hoseo University, Asan, Republic of Korea)

Abstract AI-Helper 아이콘AI-Helper

To better understand the potential ecotoxicological impact of silver nanoparticles (AgNPs) and silver nanowires (AgNWs) released into freshwater environments, the toxicities of these nanomaterials were assessed and compared using Organization for Economic Cooperation and Development (OECD) test guid...

참고문헌 (34)

  1. 1 Keller A. A. McFerran S. Lazareva A. Suh S. Global life cycle releases of engineered nanomaterials Journal of Nanoparticle Research 2013 15 6, article 1692 2-s2.0-84877604511 10.1007/s11051-013-1692-4 

  2. 2 Woodrow Wilson Database Nanotechnology Consumer Product Inventory 2011 http://www.nanotechproject.org/inventories/consumer/analysis_draft/ 

  3. 3 Batley G. E. Kirby J. K. McLaughlin M. J. Fate and risks of nanomaterials in aquatic and terrestrial environments Accounts of Chemical Research 2013 46 3 854 862 2-s2.0-84875343812 10.1021/ar2003368 22759090 

  4. 4 Prabhu S. Poulose E. K. Silver nanoparticles: mechanism of antimicrobial action, synthesis, medical applications, and toxicity effects International Nano Letters 2012 2 1, article 32 10.1186/2228-5326-2-32 

  5. 5 Valodkar M. Sharma P. Kanchan D. K. Thakore S. Conducting and antimicrobial properties of silver nanowire-waxy starch nanocomposites International Journal of Green Nanotechnology: Physics and Chemistry 2010 2 1 P10 P19 2-s2.0-79955824138 10.1080/19430876.2010.488209 

  6. 6 Johari S. A. Kalbassi M. R. Soltani M. Yu I. J. Toxicity comparison of colloidal silver nanoparticles in various life stages of rainbow trout ( Oncorhynchus mykiss ) Iranian Journal of Fisheries Sciences 2013 12 1 76 95 2-s2.0-84873691593 

  7. 7 Asghari S. Johari S. A. Lee J. H. Toxicity of various silver nanoparticles compared to silver ions in Daphnia magna Journal of Nanobiotechnology 2012 10, article no. 14 10.1186/1477-3155-10-14 2-s2.0-84859130335 

  8. 8 Ribeiro F. Gallego-Urrea J. A. Jurkschat K. Silver nanoparticles and silver nitrate induce high toxicity to Pseudokirchneriella subcapitata , Daphnia magna and Danio rerio Science of the Total Environment 2014 466-467 232 241 2-s2.0-84881236720 10.1016/j.scitotenv.2013.06.101 23895786 

  9. 9 George S. Lin S. Ji Z. Surface defects on plate-shaped silver nanoparticles contribute to its hazard potential in a fish gill cell line and zebrafish embryos ACS Nano 2012 6 5 3745 3759 2-s2.0-84864697364 10.1021/nn204671v 22482460 

  10. 10 Kim W.-Y. Kim J. Park J. D. Ryu H. Y. Yu I. J. Histological study of gender differences in accumulation of silver nanoparticles in kidneys of Fischer 344 rats Journal of Toxicology and Environmental Health, Part A: Current Issues 2009 72 21-22 1279 1284 10.1080/15287390903212287 2-s2.0-75749106276 

  11. 11 Artal M. C. Holtz R. D. Kummrow F. Alves O. L. Umbuzeiro G. D. A. The role of silver and vanadium release in the toxicity of silver vanadate nanowires toward Daphnia similis Environmental Toxicology and Chemistry 2013 32 4 908 912 10.1002/etc.2128 2-s2.0-84875509004 23341191 

  12. 12 Scanlan L. D. Reed R. B. Loguinov A. V. Silver nanowire exposure results in internalization and toxicity to Daphnia magna ACS Nano 2013 7 12 10681 10694 10.1021/nn4034103 2-s2.0-84891363926 24099093 

  13. 13 Lee J. Y. Kim J. S. An K. H. Electrophoretic and dynamic light scattering in evaluating dispersion and size distribution of single-walled carbon nanotubes Journal of Nanoscience and Nanotechnology 2005 5 7 1045 1049 10.1166/jnn.2005.160 2-s2.0-27744481889 16108425 

  14. 14 NIOSH (National Institute for Occupational Safety and Health) NIOSH Manual of Analytical Methods 1999 Cincinnati, Ohio, USA NIOSH (Method no. 7300, 7604) 

  15. 15 Welsh P. G. Lipton J. Mebane C. A. Marr J. C. A. Influence of flow-through and renewal exposures on the toxicity of copper to rainbow trout Ecotoxicology and Environmental Safety 2008 69 2 199 208 10.1016/j.ecoenv.2007.04.003 2-s2.0-36549036216 17517436 

  16. 16 OECD OECD Guidelines for the Testing of Chemicals. Test no. 203: Fish, Acute Toxicity Test 1992 Paris, France Organization for Economic Cooperation and Development 

  17. 17 OECD Test No. 202: Daphnia sp., acute immobilization test OECD Guidelines for the Testing of Chemicals 2004 Paris, France Organization for Economic Cooperation and Development 

  18. 18 Allen H. J. Impellitteri C. A. Macke D. A. Effects from filtration, capping agents, and presence/absence of food on the toxicity of silver nanoparticles to Daphnia magna Environmental Toxicology and Chemistry 2010 29 12 2742 2750 10.1002/etc.329 2-s2.0-78249274936 20890913 

  19. 19 Glover C. N. Wood C. M. Accumulation and elimination of silver in Daphnia magna and the effect of natural organic matter Aquatic Toxicology 2005 73 4 406 417 2-s2.0-21744457758 10.1016/j.aquatox.2005.05.002 15927281 

  20. 20 OECD OECD Guidelines for the Testing of Chemicals. Test No. 201: Freshwater Alga and Cyanobacteria, Growth Inhibition Test 2006 Paris, France Organization for Economic Cooperation and Development 

  21. 21 Tomaszewska E. Soliwoda K. Kadziola K. Detection limits of DLS and UV-Vis spectroscopy in characterization of polydisperse nanoparticles colloids Journal of Nanomaterials 2013 2013 10 313081 10.1155/2013/313081 

  22. 22 Kim J. S. Lee K. Lee Y. H. Aspect ratio has no effect on genotoxicity of multi-wall carbon nanotubes Archives of Toxicology 2011 85 7 775 786 10.1007/s00204-010-0574-0 2-s2.0-79959607315 20617304 

  23. 23 Kennedy A. J. Hull M. S. Bednar A. J. Fractionating nanosilver: importance for determining toxicity to aquatic test organisms Environmental Science & Technology 2010 44 24 9571 9577 10.1021/es1025382 2-s2.0-78650303031 21082828 

  24. 24 Newton K. M. Puppala H. L. Kitchens C. L. Colvin V. L. Klaine S. J. Silver nanoparticle toxicity to Daphnia magna is a function of dissolved silver concentration Environmental Toxicology and Chemistry 2013 32 10 2356 2364 10.1002/etc.2300 2-s2.0-84883554979 23761010 

  25. 25 Visnapuu M. Joost U. Juganson K. Dissolution of silver nanowires and nanospheres dictates their toxicity to Escherichia coli BioMed Research International 2013 2013 9 819252 2-s2.0-84884255153 10.1155/2013/819252 

  26. 26 Beer C. Foldbjerg R. Hayashi Y. Sutherland D. S. Autrup H. Toxicity of silver nanoparticles-Nanoparticle or silver ion? Toxicology Letters 2012 208 3 286 292 10.1016/j.toxlet.2011.11.002 2-s2.0-83455178341 22101214 

  27. 27 Stoehr L. C. Gonzalez E. Stampfl A. Shape matters: effects of silver nanospheres and wires on human alveolar epithelial cells Particle and Fibre Toxicology 2011 8, article 36 10.1186/1743-8977-8-36 2-s2.0-84855163223 

  28. 28 Poland C. A. Duffin R. Kinloch I. Carbon nanotubes introduced into the abdominal cavity of mice show asbestos-like pathogenicity in a pilot study Nature Nanotechnology 2008 3 7 423 428 10.1038/nnano.2008.111 2-s2.0-46749153312 

  29. 29 Tran C. L. Hankin S. M. Ross B. An outline scoping study to determine whether high aspect ratio nanoparticles (HARN) should raise the same concerns as do asbestos fibres Report on DEFRA Project 2008 CB0406 Edinburgh, UK IOM (Institute of Occupational Medicine) 

  30. 30 Gagné F. Auclair J. Turcotte P. Gagnon C. Sublethal effects of silver nanoparticles and dissolved silver in freshwater mussels Journal of Toxicology and Environmental Health—Part A: Current Issues 2013 76 8 479 490 2-s2.0-84879116711 10.1080/15287394.2013.779561 

  31. 31 Roberts A. P. Mount A. S. Seda B. In vivo biomodification of lipid-coated carbon nanotubes by Daphnia magna Environmental Science and Technology 2007 41 8 3025 3029 10.1021/es062572a 2-s2.0-34247183757 17533874 

  32. 32 Petersen E. J. Akkanen J. Kukkonen J. V. K. Weber W. J. Jr. Biological uptake and depuration of carbon nanotubes by Daphnia magna Environmental Science & Technology 2009 43 8 2969 2975 10.1021/es8029363 2-s2.0-65249115885 19475979 

  33. 33 OECD Six Years of OECD Work on the Safety of Manufactured Nanomaterials 2013 Paris, France Organization for Economic Cooperation and Development http://www.oecd.org/env/ehs/nanosafety/ 

  34. 34 GHS Globally Harmonized System of Classification and Labelling of Chemicals 2011 4th New York, NY, USA United Nations Publications 

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