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CCoN/NanoCEO's comments to the government

Carbon Nanotubes: Risk Studies

  • Becker, M. L., Fagan, J. A., Gallant, N. D. (March 2007). Length-Dependent Uptake of DNA-Wrapped Single-Walled Carbon Nanotubes. Advanced Materials, 19(7): 939 - 945. Article.
  • Belyanskaya, L; Manser, P. et al. (November 2007). The reliability and limits of the MTT reduction assay for carbon nanotubes-cell interaction. Carbon, 45 (13): 2643-2648.
  • Boczkowski, J., Lanone, (August 2007). Potential uses of carbon nanotubes in the medical field: how worried should patients be? Nanomedicine, 2(4): 407-410.
  • Bottini, M., Bruckner, S., Nika, K., Bottini, N., Bellucci, S., Magrini, A., Bergamaschi, A., & Mustelin, T. (2006). Multi-walled carbon nanotubes induce T lymphocyte apoptosis. Toxicology Letters 160: 121-126.
  • Carrero-Sánchez, J. C. ., Elías, A. L., Mancilla, R., Arrellín, G., Terrones, H., Laclette, J. P., and Terrones, M. (2006). Biocompatibility and Toxicological Studies of Carbon Nanotubes Doped with Nitrogen. Nano Letters, 6(8) pp 1609 - 1616. Abstract.
  • Casey, A; Herzog, E; Davoren, M. et al. (June 2007). Spectroscopic analysis confirms the interactions between single walled carbon nanotubes and various dyes commonly used to assess cytotoxicity. Carbon, 45 (7): 1425-1432.
  • Chen, W., Duan, L., & Zhu, D. (2007). Adsorption of Polar and Nonpolar Organic Chemicals to Carbon Nanotubes. Environ. Sci. Technol., 41, 8295–8300. Article
  • Cheng, J., Flahaut, E., Cheng, S.H. (April 2007). Effect of carbon nanotubes on developing zebrafish embryos. Environmental Toxicology and Chemistry, 26(4): 708–716. Abstract.
  • Chou, C-C., Hsiao, H-Y., et al. (2008). Single-Walled Carbon Nanotubes Can Induce Pulmonary Injury in Mouse Model. Nano Lett. Abstract.
  • Cui, D., Tian, F., Ozkan, C. S., Wang, J. & Gao, H. (2005). Effect of single wall carbon nanotubes on human HEK293 cells. Toxicology Letters, 155, 73-85.
  • Davoren, M., Herzog, E., Casey, A., Cottineau, B., Chambers, G., Byrne, H.J., Lyng, F.M. (April 2007). In vitro toxicity evaluation of single walled carbon nanotubes on human A549 lung cells. Toxicology in vitro, 21(3): 438-448.
  • De Nicola, M., Gattia, D.M., Bellucci, S. et al. (October 2007). Effect of different carbon nanotubes on cell viability and proliferation. Journal of Physics-Condensed Matter, 39, 395013. Abstract
  • Ding, L., Stilwell, J., Zhang, T., Elboudwarej, O., Jiang, H., Selegue, J. P., Cooke, P. A., Gray, J. W. & Chen, F. F. (2005). Molecular characterization of the cytotoxic mechanism of multiwall carbon nanotubes and nano-onions on human skin fibroblast. Nano Letters, 5(12): 2448- 2464. Abstract
  • Donaldson, K. Aitken, R., Tran, L., Stone, V., Duffin, R., Forrest, G., and Alexander, A. (2006). Carbon nanotubes: A review of their properties in relation to pulmonary toxicological and workplace safety. Toxicological Sciences, 92(1):5-22 Article
  • Dumortier, H., Lacotte, S., Pastorin, G., Marega, R., Wu, W., Bonifazi, D., Briand, J.P., Prato, M., Muller, S., and Bianco, A. (2006). Functionalized Carbon Nanotubes Are Non-Cytotoxic and Preserve the Functionality of Primary Immune Cells. Nano Letters, 6 (7), 1522 -1528. Abstract. Article
  • Elgrabli, D. Abella-Gallart, S. et al. (December 2007). Effect of BSA on carbon nanotube dispersion for in vivo and in vitro studies. Nanotoxicology, 1(4): 266-278. Abstract
  • Engineered Nanoparticles: Review of Health and Environmental Safety (ENRHES). (2010, January). Edinburgh Napier University, Institute of Occupational Medicine (ION), Technical University of Denmark (DTU), Institute for Health and Consumer Protection of the European Commission's Joint Research Centre (JRC), and the Institute of Nanotechnology (IoN). Final Report
  • Ferguson, PL; Chandler, GT; Templeton, T. et al. (May 2008). Influence of sediment-amendment with single-walled carbon nanotubes and diesel soot on bioaccumulation of hydrophobic organic contaminants by benthic invertebrates. Environmental science & technology, 42 (10): 3879-3885. Abstract
  • Fiorito, S., Serafino, A., Andreola, F., Togna, A., Bernier, P. (2006). Effects of fullerenes and single-wall carbon nanotubes on murine and human macrophages. Carbon, 44: 1100–1105
  • Fiorito, S., Serafino, A., Andreola, F., Togna, A., Tongna, G. (2006). Toxicity and biocompantibility of carbon nanoparticles. Journal of Nanoscience and Nanotechnology, 6(3): 591-599.
  • Ghafari, P., St-Denis, C.H., Power, M.E. et al. (2008). Impact of carbon nanotubes on the ingestion and digestion of bacteria by ciliated protozoa. Nature Nanotechnology, 3: 347-351. Abstract
  • Grabinski, C., Hussain, S. et al. (November 2007). Effect of particle dimension on biocompatibility of carbon nanomaterials. Carbon, 45 (14): 2828-2835.
  • Grobert, N. (January-February 2007). Carbon nanotubes – becoming clean. Materials Today, 10,1-2:28-35. Abstract.
  • Hamilton Jr, R.F., Buford, M.C., Wood, M.B. et al. (June 2007). Engineered carbon nanoparticles alter macrophage immune function and initiate airway hyper-responsiveness in the BALB/c mouse model. Nanotoxicology, 1(2): 104-117. Article
  • Han, J.J., Lee, E.J., Lee, J.H. et al. (June 2008). Monitoring Multiwalled Carbon Nanotube Exposure in Carbon Nanotube Research Facility. Inhalation Toxicology, 20(8): 741-749. Article
  • Han, SG; Andrews, R; Gairola, CG; Bhalla, DK. (February 2008). Acute pulmonary effects of combined exposure to carbon nanotubes and ozone in mice. Inhalation Toxicology, 20 (4): 391-398.
  • Helland, A., Wick, P., Koehler, A., Schmid, K. and Som, C. (2007). Reviewing the Environmental and Human Health Knowledge Base of Carbon Nanotubes. Environmental Health Perspectives, 115: 1125–1131. Abstract.
  • Herzog, E, Byrne, H. J., Casey, A., Davoren, M., Lenz, A. G., Maier, K.L., Duschl, A., Oostingh, G. J. (2008). SWCNT suppress inflammatory mediator responses in human lung epithelium in vitro. Toxicology and Applied Pharmacology , 234(3): 378-390.
  • Herzog, E; Casey, A; Lyng, FM; et al. (November 2007). A new approach to the toxicity testing of carbon-based nanomaterials - The clonogenic assay. Toxicology Letters , 174 (1-3): 49-60. Article
  • Huczko, A., Lange, H., Calko, E., Grubek-Jaworska & Droszc, P. (2001). Physiological testing of carbon nanotubes: Are they asbestos-like? Fullerene Science & Technology, 9: 251-254.
  • - NEW - Hull, M., S., Kennedy, A. J., Steevens, J. A., Bednar, A. J., Weiss Jr., C. A., Vikesland, P. J. (2009). Release of metal impurities from carbon nanomaterials influences aquatic toxicity. Environmental Science & Technology. 43: 4169-4174. DOI: 10.1021/es802483p. Abstract
  • Hurt, R.H., Monthioux, M., Kane, A. (May 2006). Toxicology of Carbon Nanomaterials: Status, Trends, and Perspectives on the Special Issue, Carbon, 44(6): 1028-1033. Abstract.
  • Hyung, H., Fortner, J.D., Hughes, J.B., and Kim, J.H. (January 2007). Natural Organic Matter Stabilizes Carbon Nanotubes in the Aqueous Phase. Environmental Science and Technology, 41(1): 179 -184. Abstract. Article
  • Ito, Y; Venkatesan, N; Hirako, N; Sugioka, N; Takada, K. (June 2007). Effect of fiber length of carbon nanotubes on the absorption of erythropoietin from rat small intestine. International Journal Of Pharmaceutics, 337 (1-2): 357-360. Abstract.
  • Jain, A.K., Mehra, N.K., Lodhi, N. et al. (September 2007). Carbon nanotubes and their toxicity. Nanotoxicology, 1(3): 167-197. Article
  • Jia, G., Wang, H., Yan, L., Wang, X., Pei, R., Yan, T., Zhao, Y., & Guo, X. (2005). Cytotoxicity of carbon nanomaterials: Single-wall nanotube, multi-wall nanotube, and fullerene. Environmental Science & Technology, 39(5): 1378-1383.
  • Kagan, V.E., Tyurina, Y.Y., Tyurin, V.A., Konduru, N.V., Potapovich, A.I., Osipov, A.N., Kisin, E.R., Schwegler-Berry, D., Mercer, R., Castranova, V. and Shvedova, A.A. (2006). Direct and indirect effects of single walled carbon nanotubes on RAW 264.7 macrophages: Role of iron. Toxicology Letters, 165: 88-100. Abstract. Article
  • Kaiser, JP; Wick, P; Manser, P; Spohn, P; Bruinink, A. (April 2008). Single walled carbon nanotubes (SWCNT) affect cell physiology and cell architecture. Journal of materials science. Materials in medicine, 19 (4): 1523-1527. Abstract
  • Kane, A.B., Hurt, R.H. (July 2008). Nanotoxicology: The asbestos analogy revisited. Nature Nanotechnology, 3, 378-379. Article
  • Ke, P.C., Qiao, R. (September 2007). Carbon nanomaterials in biological systems. Journal Of Physics-Condensed Matter, 19 (37). Abstract
  • Kipen, H. M. & Laskin, D. L. (2005). Smaller is not always better: Nanotechnology yields nanotoxicology. American Journal of Physiology: Lung, Cellular, and Molecular Physiology, 289, L696-L697.
  • Kisin, E.R., Murray, A.R, Keane, M.J. et al. (December 2007). Single-walled Carbon Nanotubes: Geno- and Cytotoxic Effects in Lung Fibroblast V79 Cells. J Toxicol Environ Health A, 70(24): 2071-9. Abstract.
  • Kisin, E., Jurray, A. R., Johnson, V., Gorelik, O., Arepalli, S., Gandelsman, V. Z., Hubbs, A. F., Mercer, R. R., Baron, P. Kagan, V. E., Castranova, V., & Shvedova, A. A. (2005). Pulmonary toxicity of carbon nanotubes. Toxicologist, 84(Suppl 1), 212.
  • Kolosnjaj, J., Szwarc, H., Moussa, F. (2007). Toxicity studies of carbon nanotubes. Advances in experimental medicine and biology, 620: 181-204.
  • Koyama , S., Endo M., Kim Y.A., Hayashi T., Yanagisawa, T., Osaka, K., Koyama, H., Haniu, H., Kuroiwa, N. (2006). Role of systemic T-cells and histopathological aspects after subcutaneous implantation of various carbon nanotubes in mice. Carbon, 44: 1079–1092
  • Lacerda, L., Bianco, A., Prato, M., Kostarelos, K. (2006). Carbon nanotubes as nanomedicines: From toxicology to pharmacology. Advanced Drug Delivery Review.
  • Lam, C. W., James, J. T., McCluskey, R., & Hunter, R. L. 2004. Pulmonary toxicity of single-wall carbon nanotubes in mice 7 and 90 days after intratracheal instillation. Toxicological Sciences, 77, 126-134. Abstract
  • Lam, C.W., James, J., McCluskey, R., Sivaram, A., & Hunter, R. (2006). A review of carbon nanotube toxicity and assessment of potential occupational and environmental health risks. Critical Reviews in Toxicology, 36(3): 189-217. Abstract
  • Li, Z., Hulderman, T., Salmen, R., Chapman, R., Leonard, S.S, Young, S.H., Shvedova, A., Luster, M.I, and Simeonova, P.P. (March 2007). Cardiovascular Effects of Pulmonary Exposure to Single-Wall Carbon Nanotubes. Environmental Health Perspectives, 115:3. Abstract
  • Li, S., Salmen, R., Hulderman, T., Kisin, E., Shvedova, A., Luster, M. & Simeonaova, P. (2004). Pulmonary carbon nanotube exposure and oxidative status in vascular system. Free Radical Biology & Medicine, 37(Suppl 1), S142-S143.
  • Lin, DH; Xing, BS. (November 2007). Phytotoxicity of nanoparticles: Inhibition of seed germination and root growth. Environmental pollution, 150(2):243 -250.
  • Linse, S., Cabaleiro-Lago, C., Xue, W.F.(May 2007). Nucleation of protein fibrillation by nanoparticles. Proceedings of the National Academy of Sciences of the United States of America, 104(21): 8691-8696. Article
  • Liu, X; Guo, L; Morris, D. et al. (March 2008). Targeted removal of bioavailable metal as a detoxification strategy for carbon nanotubes. Carbon, 46 (3): 489-500. Abstract
  • Liu, A., Sun, K. et al. (2008). Toxicological effects of multi-wall carbon nanotubes in rats. Journal of Nanoparticle Research, In Press. Abstract
  • - NEW - Ludicello, J. and Englehardt, J. D. (2009). A predictive Bayesian dose-response assessment for evaluating the toxicity of carbon nanotubes relative to crocidolite using a proposed emergent model. Human and Ecological Risk Assessment. 15(6): 1168-1186.
  • Magrez A, Kasas S, Salicio V, Pasquier N, Seo JW, Celio M, Catsicas S, Schwaller B, Forro L. (June 2006). Cellular toxicity of carbon-based nanomaterials. Nano Letters, 6(6):1121-5. Abstract. Article
  • Maynard, A.D., Ku, B.K., Emery, M., Stolzenburg, M., and McMurry, P.H. (January 2007). Measuring particle size-dependent physicochemical structure in airborne single walled carbon nanotube agglomerates. Journal of Nanoparticle Research, 9,1: 85-92. Abstract.
  • Maynard, A. D., Baron, P. A., Foley, M., Shvedova, A. A., Kisin, E. R., Castranova, V. (2004). Exposure to carbon nanotube material: Aerosol release during the handling of unrefined single-walled carbon nanotube material. Journal of Toxicology and Environmental Health, Part A (67), 87-100.
  • Mehra, NK; Jain, AK; Lodhi, N. et al. (2008). Challenges in the Use of Carbon Nanotubes for Biomedical Applications. Critical reviews in therapeutic drug carrier systems, 25(2): 169-206. Abstract.
  • Mercer, R.R., Scabilloni, J.F., Wang, L. et al. (2008). Alteration of deposition pattern and pulmonary response as a result of improved dispersion of aspirated single walled carbon nanotubes in a mouse model. Am J Physiol Lung Cell Mol Physio, 294: L87-L97. Abstract.
  • Mercer, R. R., Scaillonia, J., Kisin, K., Forelik, O., Arepalli, S., Murray, A. R., Castranova, V., Shvedova, A. A.(2005). Responses of lung parenchyma to carbon nanotubes. Toxicologist, 84(Suppl1), 213.
  • Mitchell, L.A., Gao, J., Wal, R.V. et al. (November 2007). Pulmonary and systemic immune response to inhaled multiwalled carbon nanotubes. Toxicological Sciences, 100 (1): 203-214. Abstract.
  • Monteiro-Riviere, N. A., Inman, A.O. (2006). Challenges for assessing carbon nanomaterial toxicity to the skin. Carbon, 44: 1070–1078
  • Monteiro-Riviere, N. A., Nemanich, R. J., Inman, A. O., Wang, Y. Y. & Riviere, J.E. (2005). Multi-walled carbon nanotube interactions with human epidermal keratinocytes. Toxicology Letters, 155, 377-384.
  • Mouchet, F; Landois, P; Sarremejean, E. et al. (April 2008). Characterisation and in vivo ecotoxicity evaluation of double-wall carbon nanotubes in larvae of the amphibian Xenopus laevis. Aquatic Toxicology, 87 (2): 127-137. Abstract
  • Mouchet, F., Landois, P., Flahaut, E., Pinelli, E., Gauthier, L. (June 2007). Assessment of the potential in vivo ecotoxicity of Double-Walled Carbon Nanotubes (DWNTs) in water, using the amphibian Ambystoma mexicanum. Nanotoxicology, 1(2): 149-156. Article
  • Muller, J; Decordier, I; et al. (February 2008). Clastogenic and aneugenic effects of multi-wall carbon nanotubes in epithelial cells. Carcinogenesis, 29(2): 427-433. Abstract.
  • Muller, J., Huaux, F., Lison, D. (2006). Respiratory toxicity of carbon nanotubes: How worried should we be? Carbon, 44: 1048–1056
  • Muller, J., Huax, F., Moreau, N., Misson, P. Heilier, J. F., Delos, M., Arras, M., Fonseca, A., Nagy, J. B., & Lison, D. (2005). Respiratory toxicity of multi-wall carbon nanotubes. Toxicology and Applied Pharmacology, In Press.
  • Murr, L. E., Bang, J. J., Esquivel, E. V., Guerrero, P. A., & Lopez, D. A. (2004). Carbon nanotubes, nanocrystal forms, and complex nanoparticle aggregates in common fuel-gas combustion sources and the ambient air. Journal of Nanoparticle Research 6: 241-251.
  • Oberdörster, E., Zhu, S., Blickley, T.M., McClellan-Green, P., Haasch, M.L. (2006). Ecotoxicology of carbon-based engineered nanoparticles: Effects of fullerene (C60) on aquatic organisms. Carbon, 44: 1112–1120
  • Panessa-Warren, B.J., Warren, J.B., Wong1, S.S., and Misewich, J.A. (August 2006). Biological cellular response to carbon nanoparticle toxicity. Journal of Physics: Condensed Matter, 18, S2185-S2201 Article
  • Petersen, EJ; Huang, QG; Weber, WJ. (April 2008). Ecological uptake and depuration of carbon nanotubes by Lumbriculus variegatus. Environmental health perspectives, 116 (4): 496-500. Abstract
  • Petersen, EJ; Huang, QG; Weber, WJ. (April 2008). Bioaccumulation of radio-labeled carbon nanotubes by Eisenia foetida. Environmental science & technology, 42(8): 3090-3095. Abstract
  • Plata, D.L., Gschwend, P.M., and Reddy, C.M. (May 2008). Industrially synthesized single-walled carbon nanotubes: compositional data for users, environmental risk assessments, and source apportionment. Nanotechnology, 19(18). Abstract
  • Poland, C.A., Duffin, R., Kinloch, I. et al. (2008). Carbon nanotubes introduced into the abdominal cavity of mice show asbestos-like pathogenicity in a pilot study. Nature Nanotechnology, Published online: 20 May 2008. Abstract.
  • Popov, A.M., Lozovik, Y.E. (2007). Biocompatibility and applications of carbon nanotubes in medical nano robots. International Journal of Nanomedicine, 2(3): 361-372. Abstract.
  • Potapovich, A., Osipov, A. N., Kisin, E. R., Schwegler, B. D., Shvedova, A. A., & Kagan, V. E. (2005). Single-walled carbon nanotbues activate raw 264.7 macrophages: role in oxidative stress and inflammatory response. Toxicologist, 84(Suppl 1), 468.
  • Pulskamp, K., Worle-Knirsch, JM., Hennrich, F. (October 2007). Human lung epithelial cells show biphasic oxidative burst after single-walled carbon nanotube contact. Carbon, 45(11): 2241-2249.
  • Pulskamp, K., Diabaté, S. and Krug, H.F. (January 2007). Carbon nanotubes show no sign of acute toxicity but induce intracellular reactive oxygen species in dependence on contaminants. Toxicology Letters, 168(1): 58-74. Article.
  • Radomski, A., Jurasz, P., Alonso-Escalano, D., Drews, J., Morandi, M., Malinski, T., & Radomski, M.W. (2005). Nanoparticle-induced platelet aggregation and vascular thrombosis. British Journal of Pharmacology, 146: 882-893.
  • Raja, P.M.V., Connolley, J., et al. (February 2007). Impact of carbon nanotube exposure, dosage and aggregation on smooth muscle cells. Toxicology Letters, 169(1): 51-63. Article.
  • Reilly, R.M. (July 2007). Carbon nanotubes: Potential benefits and risks of nanotechnology in nuclear medicine. Journal of Nuclear Medicine, 48(7): 1039-1042. Article.
  • Rotoli, BM; Bussolati, O; Bianchi, MG. et al. (May 2008). Non-functionalized multi-walled carbon nanotubes alter the paracellular permeability of human airway epithelial cells. Toxicology Letters, 178 (2): 95-102.
  • - NEW - Ryman-Rasmussen, J.P., Cesta, M.F., Broday, A. R., Shipley-Phillips, J.K., Everitt, J. I., Tewskbury, E. W., Moss, O.R., Wong, B. A., Dodd, D. E., Andersen, M.E., Bonner, J.C. (2009). Nature Nanotechnology, 4: 747-751. Abstract.
  • Sarkar, S., Sharma, C., Yog, R., Periakaruppan, A., Jejelowo, O., Thomas, R., Barrera, E.V., Rice-Ficht, A.C., Wilson, B.L., Ramesh, G.T. (February 2007). Journal of Nanoscience and Nanotechnology, 7,2: 584-592(9). Abstract.
  • Saxena, R.K., Williams, W. et al. (December 2007). Enhanced in vitro and in vivo toxicity of poly-dispersed acid-functionalized single-wall carbon nanotubes. Nanotoxicology, 1(4): 291-300. Abstract.
  • Sayes, C.M., Feng L., Hudson J.L., Mendez J., WenhuA.G., Beach J.M., Moore V.C., Doyle C.D., West J.L., Billups W.E., Ausman K.D., Colvin V.L. (February 2006). Functionalization density dependence of single-walled carbon nanotubes cytotoxicity in vitro. Toxicology Letters, Volume 161, Issue 2, 135-142. Abstract. Article
  • Sharma, C.S., Sarkar, S., Periyakaruppan, A. et al. (July 2007). Single-walled carbon nanotubes induces oxidative stress in rat lung epithelial cells, Journal of Nanoscience and Nanotechnology, 7 (7): 2466-2472. Abstract
  • Schipper, M.L., Nakayama-Ratchford, N., Davis, C.R. et al. (May 2008). A pilot toxicology study of single-walled carbon nanotubes in a small sample of mice. Nature Nanotechnology, 3(4): 216-221 Abstract
  • Shvedova, A.A., Kisin, E.R., Murray, A.R. et al. (2008). Inhalation Versus Aspiration Of Single Walled Carbon Nanotubes In C57bl/6 Mice: Inflammation, Fibrosis, Oxidative Stress And Mutagenesis. Am J Physiol Lung Cell Mol Physiol., 3(4): 216-221 Abstract
  • Shvedova, A.A., Fabisiak, J.P., Kisin, E.R. et al. (May 2008). Sequential Exposure to Carbon Nanotubes and Bacteria Enhances Pulmonary Inflammation and Infectivity. Am. J. Respir. Cell Mol. Biol. Abstract
  • Shvedova, A.A., Kisin, E.R., Mercer, R., et al. (2005). Unusual inflammatory and fibrogenic pulmonary responses to single-walled carbon nanotubes in mice. American Journal of Physiology, Lung, 289, 698-708.
  • Shvedova, A. A., Castranova, V., Kisin, E. R., Schwegler-Berry, D., Murray, A. R., Gandelsman, V., Maynard, A., Baron, P. (2003). Exposure to carbon nanotubes material: Assessment of nanotube cytotoxicity using human keratinocyte cells. Journal of Toxicology and Environmental Health, Part A (66), 1909-1926.
  • Simeonova, P. P., Li, Z., Luster, M. I., Shvedova, A., Salmen, R. & Hulderman, T. (2005). Carbon nanotubes exposure and cardiovascular outcomes. Paper presented at the 2nd International Symposium on Nanotechnology and Occupational Health, Oct. 3-6, Minneapolis, MN.
  • Singh, R., Pantarotto, D., Lacerda, L., Pastorin, G., Klumpp, C., Prato, M., Bianco, A., and Kostarelos, K. (February 2006). Tissue biodistribution and blood clearance rates of intravenously administered carbon nanotube radiotracers. PNAS, Volume 103, no. 9, 3357-3362. Abstract. Article
  • Simon, A., Thiebault, C., et al. (September 2006). Toxicity of oxide nanoparticles and carbon nanotubes on cultured pneumocytes: Impact of size, structure and surface charge. Toxicology Letters, 164, Suppl. 1: 222. Abstract.
  • Smart S.K., Cassady A.I., Lu G.Q., and Martin, D.J. (2006). The biocompatibility of carbon nanotubes. Carbon, 44: 1034–1047
  • Smith, C.J., Shaw, B.J., Handy, R.D. (May 2007). Toxicity of single walled carbon nanotubes to rainbow trout, (Oncorhynchus mykiss): Respiratory toxicity, organ pathologies, and other physiological effects. Aquatic Toxicology, 82 (2): 94-109. Abstract.
  • Soto, K.F., Carrasco, A., Powell, T.G., Garza, K.M., and Murr, L.E. (2005). Comparative in vitro cytotoxicity assessment of some manufactured nanoparticulate materials characterized by transmission electron microscopy. Journal of Nanoparticle Research, 7: 145-169. Abstract
  • Sweet, L., Strohm, B. (June 2006). Nanotechnology - Life-cycle risk management. Human and Ecological Risk Assessment, 12 (3): 528-551
  • Szendi, K; Varga, C. (January-February 2008). Lack of genotoxicity of carbon nanotubes in a pilot study. Anticancer research, 28 (1A): 349-352 . Abstract
  • Takagi A, Hirose A, Nishimura T, et al. (February 2008). Induction of mesothelioma in p53+/- mouse by intraperitoneal application of multi-wall carbon nanotube. The Journal of Toxicological Sciences, 33(1): 105-116 . Abstract
  • Tan, XM; Fugetsu, B. (September 2007). Multi-walled carbon nanotubes interact with cultured rice cells: Evidence of a self-defense response. Journal of Biomedical Nanotechnology, 3(3): 285-288.
  • - NEW - Tan, X.M., Chu, L. Fugetsu, B. (2009). Studies on toxicity of multi-walled carbon nanotubes on suspension rice cells. Carbon. DOI: 10.1016/j.carbon.2009.08.018 Abstract
  • Tantra R., Cumpson, P. (December 2007). The detection of airborne carbon nanotubes in relation to toxicology and workplace safety. Nanotoxicology, 1(4): 251-265. Abstract.
  • Templeton, R.C., Ferguson, P.L., Washburn, K.M., Scrivens, W.A., and Chandler, G.T. (September 2006). Life-Cycle Effects of Single-Walled Carbon Nanotubes (SWNTs) on an Estuarine Meiobenthic Copepod. Environmental Science and Technology, 40(23): 7387 – 7393. Abstract.
  • - NEW - Thurnherr, T., Su, S. S., Diener, L., Weinberg, G., Manswer, P., Pfander, N., Arrigo, R., Schuster, M.E., Wick, P., Krug, H. F. (2009). Comprehensive evaluation of in vitro toxicity of three large-scale produced carbon nanotubes on human Jurkat T cells and a comparison to crocidolite asbestos. Nanotoxicology, 3(4): 319-338. Abstract
  • Warheit, D.B. (2006). What is currently known about the health risks related to carbon nanotube exposures? Carbon, 44: 1064–1069
  • Warheit, D. B., Laurence, B. R., Reed, K. L., Roach, D. H., Reynolds, G. A. & Webb, T. R. (2004). Comparative pulmonary toxicity assessment of single-wall carbon nanotubes in rats. Toxicological Sciences, 77, 117-125.
  • Wick, P., Manser, P., Limbach, L. et ali. (January 2007). The degree and kind of agglomeration affect carbon nanotube cytotoxicity. Toxicology Letters, 168(2): 121-131. Abstract.
  • Wick, P., Manser, P., Spohn, P., Bruinink, A. (October 2006). In vitro evaluation of possible adverse effects of nanosized materials. Physica Status Solidi (b), 243(13): 3556 - 3560. Abstract.
  • Worle-Knirsch, J.M., Pulskamp, K. & Krug, H.F. (2006). Oops they did it again! Carbon nanotubes hoax scientists in viability assays. Nano Letters, 6(6): 1261-1268. Abstract
  • Yacobi, NR; Phuleria, HC. et al. (December 2007). Nanoparticle effects on rat alveolar epithelial cell monolayer barrier properties. Toxicology in Vitro, 21(8): 1373-1381.
  • Yan, XM; Shi, BY; Lu, JJ. (May 2008). Adsorption and desorption of atrazine on carbon nanotubes. Journal of colloid and interface science, 321 (1): 30-38. Abstract
  • Zeni, O; Palumbo, R; Bernini, R. et al. (January 2008). Cytotoxicity investigation on cultured human blood cells treated with single-wall carbon nanotubes. Sensors, 8(1): 488-499. Abstract
  • Zhang, XK; Wang, XF; Lu, QH; Fu, CL. (March 2008). Influence of carbon nanotube scaffolds on human cervical carcinoma HeLa cell viability and focal adhesion kinase expression. Carbon, 46(3): 453-460. Abstract
  • Zhang, D.W., Yi, C.Q., Zhang, J.C. et al. (November 2007). The effects of carbon nanotubes on the proliferation and differentiation of primary osteoblasts. Nanotechnology, 18(47). Abstract
  • Zhang, L.W., Zeng, L., Barron A.R.B, Monteiro-Riviere, N.A. (March 2007). Biological Interactions of Functionalized Single-Wall Carbon Nanotubes in Human Epidermal Keratinocytes. International Journal of Toxicology, 26(2): 103-113. Abstract
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Last updated November 2009 - Maria Powell

Caralluma fimbriata (not verified) | Sun, 2009-07-26 06:30

Subject of your website is interesting for me, bookmarked
regards bxansamo

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