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Research Article

Dietary toxicity of single-walled carbon nanotubes and fullerenes (C60) in rainbow trout (Oncorhynchus mykiss)

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Pages 98-108 | Received 06 Aug 2009, Accepted 16 Jun 2010, Published online: 15 Jul 2010

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Junyi Li, Guang-Guo Ying, Kevin C. Jones & Francis L. Martin. (2015) Real-world carbon nanoparticle exposures induce brain and gonadal alterations in zebrafish (Danio rerio) as determined by biospectroscopy techniques. The Analyst 140:8, pages 2687-2695.
Crossref
Hanna M. Maes, Felix Stibany, Sebastian Giefers, Benjamin Daniels, Björn Deutschmann, Werner Baumgartner & Andreas Schäffer. (2014) Accumulation and Distribution of Multiwalled Carbon Nanotubes in Zebrafish ( Danio rerio ) . Environmental Science & Technology 48:20, pages 12256-12264.
Crossref
Sijie Lin, Xiang Wang, Zhaoxia Ji, Chong Hyun Chang, Yuan Dong, Huan Meng, Yu-Pei Liao, Meiying Wang, Tze-Bin Song, Sirus Kohan, Tian Xia, Jeffrey I. Zink, Shuo Lin & André E. Nel. (2014) Aspect Ratio Plays a Role in the Hazard Potential of CeO 2 Nanoparticles in Mouse Lung and Zebrafish Gastrointestinal Tract . ACS Nano 8:5, pages 4450-4464.
Crossref
Nancy Monteiro-Riviere & C TranDanail Hristozov, Laura MacCalman, Keld Jensen, Vicki Stone, Janeck Scott-Fordsmand, Bernd Nowack, Teresa Fernandes & Antonio Marcomini. 2014. Nanotoxicology. Nanotoxicology 459 478 .
Joseph H. BisesiJr.Jr., Jonathan Merten, Keira Liu, Ashley N. Parks, A. R. M. Nabiul Afrooz, J. Brad Glenn, Stephen J. Klaine, Andrew S. Kane, Navid B. Saleh, P. Lee Ferguson & Tara Sabo-Attwood. (2014) Tracking and Quantification of Single-Walled Carbon Nanotubes in Fish Using Near Infrared Fluorescence. Environmental Science & Technology 48:3, pages 1973-1983.
Crossref
Josencler L. Ribas Ferreira, María Noelia Lonné, Thiago A. França, Naiana R. Maximilla, Thiago H. Lugokenski, Patrícia G. Costa, Gilberto Fillmann, Félix A. Antunes Soares, Fernando R. de la Torre & José María Monserrat. (2014) Co-exposure of the organic nanomaterial fullerene C60 with benzo[a]pyrene in Danio rerio (zebrafish) hepatocytes: Evidence of toxicological interactions. Aquatic Toxicology 147, pages 76-83.
Crossref
David Boyle, James E. Fox, Jane M. Akerman, Katherine A. Sloman, Theodore B. Henry & Richard D. Handy. (2014) Minimal effects of waterborne exposure to single-walled carbon nanotubes on behaviour and physiology of juvenile rainbow trout (Oncorhynchus mykiss). Aquatic Toxicology 146, pages 154-164.
Crossref
Eugene Foster, Lawrence R. Curtis & Deke Gundersen. 2014. Wild Salmonids in the Urbanizing Pacific Northwest. Wild Salmonids in the Urbanizing Pacific Northwest 123 144 .
Petra Jackson, Nicklas Raun Jacobsen, Anders Baun, Renie Birkedal, Dana Kühnel, Keld Alstrup Jensen, Ulla Vogel & Håkan Wallin. (2013) Bioaccumulation and ecotoxicity of carbon nanotubes. Chemistry Central Journal 7:1.
Crossref
Theodore B. HenryStephen J. WilemanHalis Boran & Paul Sutton. (2013) Association of Hg 2+ with Aqueous (C 60 ) n Aggregates Facilitates Increased Bioavailability of Hg 2+ in Zebrafish ( Danio rerio ) . Environmental Science & Technology 47:17, pages 9997-10004.
Crossref
Jia Du, Shutao Wang, Hong You & Xuesong Zhao. (2013) Understanding the toxicity of carbon nanotubes in the environment is crucial to the control of nanomaterials in producing and processing and the assessment of health risk for human: A review. Environmental Toxicology and Pharmacology 36:2, pages 451-462.
Crossref
Asheesh Gupta, Pinar Avci, Magesh Sadasivam, Rakkiyappan Chandran, Nivaldo Parizotto, Daniela Vecchio, Wanessa C.M.A. de Melo, Tianhong Dai, Long Y. Chiang & Michael R. Hamblin. (2013) Shining light on nanotechnology to help repair and regeneration. Biotechnology Advances 31:5, pages 607-631.
Crossref
Ashley N. Parks, Lisa M. Portis, P. Ariette Schierz, Kate M. Washburn, Monique M. Perron, Robert M. Burgess, Kay T. Ho, G. Thomas Chandler & P. Lee Ferguson. (2013) Bioaccumulation and toxicity of single‐walled carbon nanotubes to benthic organisms at the base of the marine food chain. Environmental Toxicology and Chemistry 32:6, pages 1270-1277.
Crossref
Daniel L. Merrifield, Benjamin J. Shaw, Glenn M. Harper, Imad P. Saoud, Simon J. Davies, Richard D. Handy & Theodore B. Henry. (2013) Ingestion of metal-nanoparticle contaminated food disrupts endogenous microbiota in zebrafish (Danio rerio). Environmental Pollution 174, pages 157-163.
Crossref
Selvin P. Thomas, Eid M. Al-Mutairi & Sadhan Kumar De. (2012) Impact of Nanomaterials on Health and Environment. Arabian Journal for Science and Engineering 38:3, pages 457-477.
Crossref
Changwei Hu, Yun Cai, Weili Wang, Yibin Cui & Mei Li. (2013) Toxicological effects of multi-walled carbon nanotubes adsorbed with nonylphenol on earthworm Eisenia fetida. Environmental Science: Processes & Impacts 15:11, pages 2125.
Crossref
Tyson J. MacCormack, Greg G. Goss & Richard D. Handy. 2013. Organic Chemical Toxicology of Fishes. Organic Chemical Toxicology of Fishes 439 479 .
Karl S. Coleman. (2012) Nanotubes. Annual Reports Section "A" (Inorganic Chemistry) 108, pages 478.
Crossref
Elijah J. Petersen & Theodore B. Henry. (2012) Methodological considerations for testing the ecotoxicity of carbon nanotubes and fullerenes: Review. Environmental Toxicology and Chemistry 31:1, pages 60-72.
Crossref
Carmen Giordano, Diego Albani, Antonio Gloria, Marta Tunesi, Serena Rodilossi, Teresa Russo, Gianluigi Forloni, Luigi Ambrosio & Alberto Cigada. (2011) Nanocomposites for Neurodegenerative Diseases: Hydrogel-Nanoparticle Combinations for a Challenging Drug Delivery. The International Journal of Artificial Organs 34:12, pages 1115-1127.
Crossref
Elijah J. Petersen, Liwen Zhang, Nikolai T. Mattison, Denis M. O’Carroll, Andrew J. Whelton, Nasir Uddin, Tinh Nguyen, Qingguo Huang, Theodore B. Henry, R. David Holbrook & Kai Loon Chen. (2011) Potential Release Pathways, Environmental Fate, And Ecological Risks of Carbon Nanotubes. Environmental Science & Technology 45:23, pages 9837-9856.
Crossref
K. Pakarinen, E.J. Petersen, M.T. Leppänen, J. Akkanen & J.V.K. Kukkonen. (2011) Adverse effects of fullerenes (nC60) spiked to sediments on Lumbriculus variegatus (Oligochaeta). Environmental Pollution 159:12, pages 3750-3756.
Crossref
R. D. Handy, G. Al-Bairuty, A. Al-Jubory, C. S. Ramsden, D. Boyle, B. J. Shaw & T. B. Henry. (2011) Effects of manufactured nanomaterials on fishes: a target organ and body systems physiology approach. Journal of Fish Biology 79:4, pages 821-853.
Crossref
Theodore B Henry, Elijah J Petersen & Robert N Compton. (2011) Aqueous fullerene aggregates (nC60) generate minimal reactive oxygen species and are of low toxicity in fish: a revision of previous reports. Current Opinion in Biotechnology 22:4, pages 533-537.
Crossref
Nastassja A. Lewinski, Huiguang Zhu, Clare R. Ouyang, George P. Conner, Daniel S. Wagner, Vicki L. Colvin & Rebekah A. Drezek. (2011) Trophic transfer of amphiphilic polymer coated CdSe/ZnS quantum dots to Danio rerio. Nanoscale 3:8, pages 3080.
Crossref
Elijah J. PetersenTheodore B. Henry. 2011. Biotechnology and Nanotechnology Risk Assessment: Minding and Managing the Potential Threats around Us. Biotechnology and Nanotechnology Risk Assessment: Minding and Managing the Potential Threats around Us 103 119 .
June-Woo Park, Theodore B. Henry, Fu-Min Menn, Robert N. Compton & Gary Sayler. (2010) No bioavailability of 17α-ethinylestradiol when associated with nC60 aggregates during dietary exposure in adult male zebrafish (Danio rerio). Chemosphere 81:10, pages 1227-1232.
Crossref

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