Автор |
Donaldson, Ken |
Автор |
Stone, Vicki |
Дата выпуска |
2007 |
ISBN |
978-0-85404-216-6 |
Формат |
application.pdf |
Издатель |
Royal Society of Chemistry |
Название |
Chapter 5. Toxicological Properties of Nanoparticles and Nanotubes |
Тип |
other |
DOI |
10.1039/9781847557766-00081 |
Print ISSN |
1350-7583 |
Журнал |
Nanotechnology: Consequences for Human Health and the Environment: Volume 24 |
Том |
24 |
Первая страница |
81 |
Последняя страница |
101 |
Библиографическая ссылка |
A. Seaton, W. MacNee, K. Donaldson, D. Godden, Particulate air-pollution and acute health-effects, Lancet, 1995, 345, 176, 178 |
Библиографическая ссылка |
M.J. Utell, M.W. Frampton, Acute health effects of ambient air pollution: the ultrafine particle hypothesis, Journal of Aerosol Medicine, 2000, 13, 355, 359 |
Библиографическая ссылка |
K. Donaldson, L. Tran, L. Jimenez, R. Duffin, D.E. Newby, N. Mills, W. MacNee, V. Stone, Combustion-derived nanoparticles: A review of their toxicology following inhalation exposure, I. Part. Fibre Toxicol., 2005, 2, 1, 10 |
Библиографическая ссылка |
B. Brunekreef, S.T. Holgate, Air pollution and health, Lancet, 2002, 360, 9341, 1233, 1242 |
Библиографическая ссылка |
A. Peters, D.W. Dockery, J.E. Muller, M.A. Mittleman, Incresed particulate air pollution and the triggering of myocardial infarction, Circulation, 2001, 103, 23, 2810, 2815 |
Библиографическая ссылка |
H. Gong Jr., W.S. Linn, S.L. Terrell, K.W. Clark, M.D. Geller, K.R. Anderson, W.E. Cascio, C. Sioutas, Altered heart-rate variability in asthmatic and healthy volunteers exposed to concentrated ambient coarse particles, Inhal. Toxicol., 2004, 16, 6-7, 335, 343 |
Библиографическая ссылка |
R.B. Devlin, A.J. Ghio, H. Kehrl, G. Sanders, W. Cascio, Elderly humans exposed to concentrated air pollution particles have decreased heart rate variability, Eur. Respir. J. Suppl, 2003, 40, 76s, 80s |
Библиографическая ссылка |
A.J. Ghio, C. Kim, R.B. Devlin, Concentrated ambient air particles induce mild pulmonary inflammation in healthy human volunteers, Am. J. Respir. Crit. Care Med., 2000, 162, 3 Pt 1, 981, 988 |
Библиографическая ссылка |
R.D. Brook, J.R. Brook, B. Urch, R. Vincent, S. Rajagopalan, F. Silverman, Inhalation of fine particulate air pollution and ozone causes acute arterial vasoconstriction in healthy adults, Circulation, 2002, 105, 13, 1534, 1536 |
Библиографическая ссылка |
N. Kunzli, M. Jerrett, W.J. Mack, B. Beckerman, L. LaBree, F. Gilliland, D. Thomas, J. Peters, H.N. Hodis, Ambient air pollution and atherosclerosis in Los Angeles, Environ. Health Perspect., 2005, 113, 2, 201, 206 |
Библиографическая ссылка |
R.B. Schlesinger, F. Cassee, Atmospheric secondary inorganic particulate matter: the toxicological perspective as a basis for health effects risk assessment, Inhal. Toxicol., 2003, 15, 3, 197, 235 |
Библиографическая ссылка |
C.A. Pope, M.J. Thun, M.M. Namboodiri, D.W. Dockery, J.S. Evans, F.E. Speizer, C.W. Heath, Jr., Particulate air pollution as a predictor of mortality in a prospective study of U.S. adults, American Journal of Respiratory & Critical Care Medicine, 1995, 151, 3 Pt 1, 669, 674 |
Библиографическая ссылка |
J.J. de Hartog, G. Hoek, A. Mirme, T. Tuch, G.P. Kos, H.M. ten Brink, B. Brunekreef, J. Cyrys, J. Heinrich, M. Pitz, T. Lanki, M. Vallius, J. Pekkanen, W.G. Kreyling, Relationship between different size classes of particulate matter and meteorology in three European cities, J. Environ. Monit., 2005, 7, 4, 302, 310 |
Библиографическая ссылка |
A. Elder, R. Gelein, J. Finkelstein, R. Phipps, M. Frampton, M. Utell, D.B. Kittelson, W.F. Watts, P. Hopke, C.H. Jeong, E. Kim, W. Liu, W. Zhao, L. Zhuo, R. Vincent, P. Kumarathasan, G. Oberdorster, On-road exposure to highway aerosols. 2. Exposures of aged, compromised rats, Inhal. Toxicol., 2004, 16, Suppl 1, 41, 53 |
Библиографическая ссылка |
D.B. Kittelson, W.F. Watts, J.P. Johnson, M.L. Remerowki, E.E. Ische, G. Oberdorster, R.M. Gelein, A. Elder, P.K. Hopke, E. Kim, W. Zhao, L. Zhou, C.H. Jeong, On-road exposure to highway aerosols. 1. Aerosol and gas measurements, Inhal. Toxicol., 2004, 16, Suppl 1, 31, 39 |
Библиографическая ссылка |
A. Afshari, U. Matson, L.E. Ekberg, Characterization of indoor sources of fine and ultrafine particles: a study conducted in a full-scale chamber, Indoor. Air, 2005, 15, 2, 141, 150 |
Библиографическая ссылка |
M. Dennekamp, S. Howarth, C.A. Dick, J.W. Cherrie, K. Donaldson, A. Seaton, Ultrafine particles and nitrogen oxides generated by gas and electric cooking, Occup. Environ. Med., 2001, 58, 8, 511, 516 |
Библиографическая ссылка |
K. Donaldson, V. Stone, P.J. Borm, L.A. Jimenez, P.S. Gilmour, R.P. Schins, A.M. Knaapen, I. Rahman, S.P. Faux, D.M. Brown, W. MacNee, Oxidative stress and calcium signaling in the adverse effects of enviromental particle (PM(10)), Free Radic. Biol. Med., 2003, 34, 11, 1369, 1382 |
Библиографическая ссылка |
Y. Miyabara, R. Yanagisawa, N. Shimojo, H. Takano, H.B. Lim, T. Ichinose, M. Sagai, Murine strain differences in airway inflammation caused by diesel exhaust particles, European Respiratory Journal, 1998, 11, 2, 291, 298 |
Библиографическая ссылка |
Y. Tsurudome, T. Hirano, H. Yamato, I. Tanaka, M. Sagai, H. Hirano, N. Nagata, H. Itoh, H. Kasai, Changes in levels of 8-hydroxyguanine in DNA, its repair and OGGI mRNA in rat lungs after intratracheal administration of diesel exhaust particles, Carcinogenesis, 1999, 20, 8, 1573, 1576 |
Библиографическая ссылка |
C. Nordenhall, J. Pourazar, A. Blomberg, J.O. Levin, T. Sandstrom, E. Adelroth, Airway inflammation following exposure to diesel exhaust: a study of time kinetics using induced sputum, Eur. Respir. J., 2000, 15, 6, 1046, 1051 |
Библиографическая ссылка |
T. lchinose, Y. Yajima, M. Nagashima, S. Takenoshita, Y. Nagamachi, M. Sagai, Lung carcinogenesis and formation of 8-hydroxy-deoxyguanosine in mice by diesel exhaust particles, Carcinogenesis, 1997, 18, 1, 185, 192 |
Библиографическая ссылка |
T. Arimoto, T. Yoshikawa, H. Takano, M. Kohno, Generation of reactive oxygen species and 8-hydroxy-2â ²-deoxyguanosine formation from diesel exhaust particle components in L1210 cells, Jpn. J. Pharmacol., 1999, 80, 1, 49, 54 |
Библиографическая ссылка |
V. Bonvallot, A. Baeza-Squiban, A. Baulig, S. Brulant, S. Boland, F. Muzeau, R. Barouki, F. Marano, Organic compounds from diesel exhaust particles elicit a proinflammatory response in human airway epithelial cells and induce cytochrome p450 1A1 expression, Am. J. Respir. Cell. Mol. Biol., 2001, 25, 4, 515, 521 |
Библиографическая ссылка |
S. Hirano, A. Furuyama, E. Koike, T. Kobayashi, Oxidative-stress potency of organic extracts of diesel exhaust and urban fine particles in rat heart microvessel endothelial cells, Toxicology, 2003, 187, 2â 3, 161, 170 |
Библиографическая ссылка |
N. Li, M.I. Venkatesan, A. Miguel, R. Kaplan, C. Gujuluva, J. Alam, A. Nel, Induction of heme oxygenase-I expression in macrophages by diesel exhaust particle chemicals and quinones via the antioxidant-responsive element, J. Immunol., 2000, 165, 6, 3393, 3401 |
Библиографическая ссылка |
A.E. Nel, D. az-Sanchez, N. Li, The role of particulate pollutants in pulmonary inflammation and asthma: evidence for the involvement of organic chemicals and oxidative stress 37, Curr. Opin. Pulm. Med., 2001, 7, 1, 20, 26 |
Библиографическая ссылка |
J.D. McNeilly, L.A. Jimenez, M.F. Clay, W. MacNee, A. Howe, M.R. Heal, I.J. Beverland, K. Donaldson, Soluble transition metals in welding fumes cause inflammation via activation of NF-kappaB and AP-11, Toxicol. Lett., 2005, 158, 2, 152, 157 |
Библиографическая ссылка |
F. Marano, S. Boland, V. Bonvallot, A. Baulig, A. Baeza-Squiban, Human airway epithelial cells in culture for studying the molecular mechanisms of the inflammatory response triggered by diesel exhaust particles, Cell. Biol. Toxicol., 2002, 18, 5, 315, 320 |
Библиографическая ссылка |
T.S. Hiura, M.P. Kaszubowski, N. Li, A.E. Nel, Chemicals in diesel exhaust particles generate reactive oxygen radicals and induce apoptosis in macrophages, J. Immunol., 1999, 163, 10, 5582, 5591 |
Библиографическая ссылка |
S. Hashimoto, Y. Gon, I. Takeshita, K. Matsumoto, I. Jibiki, H. Takizawa, S. Kudoh, T. Horie, Diesel exhaust particles activate p38 MAP kinase to produce interleukin 8 and RANTES by human bronchial epithelial cells and N-acetylcysteine attenuates p38 MAP kinase activation, Am. J. Respir. Crit. Care Med., 2000, 161, 1, 280, 285 |
Библиографическая ссылка |
H. Takizawa, T. Ohtoshi, S. Kawasaki, T. Kohyama, M. Desaki, T. Kasama, K. Kobayashi, K. Nakahara, K. Yamamoto, K. Matsushima, S. Kudoh, Diesel exhaust particles induce NF-kappa B activation in human bronchial epithelial cells in vitro: importance in cytokine transcription, J. Immunol., 1999, 162, 8, 4705, 4711 |
Библиографическая ссылка |
P.S. Gilmour, I. Rahman, K. Donaldson, W. MacNee, Histone acetylation regulates epithelial IL-8 release mediated by oxidative stress from environmental particles, Am. J. Physiol. Lung. Cell. Mol. Physiol., 2003, 284, 3, L533, L540 |
Библиографическая ссылка |
N. Terada, N. Hamano, K.I. Maesako, K. Hiruma, G. Hohki, K. Suzuki, K. lshikawa, A. Konno, Diesel exhaust particulates upregulate histamine receptor mRNA and increase histamine-induced IL-8 and GM-CSF production in nasal epithelial cells and endothelial cells [see comments], Clin. Exp. Allergy, 1999, 29, 1, 52, 59 |
Библиографическая ссылка |
S.S. Salvi, C. Nordenhall, A. Blomberg, B. Rudell, J. Pourazar, F.J. Kelly, S. Wilson, T. Sandstrom, S.T. Holgate, A.J. Frew, Acute exposure to diesel exhaust increases IL-8 and GRO-alpha production in healthy human airways, Am. J. Respir. Crit. Care. Med., 2000, 161, 2 Pt 1, 550, 557 |
Библиографическая ссылка |
H.M. Yang, J.C. Ma, V. Castranova, J.H. Ma, Effects of diesel exhaust particles on the release of interleukin-l and tumor necrosis factor-alpha from rat alveolar macrophages, Experimental Lung Research, 1997, 23, 269, 284 |
Библиографическая ссылка |
P.A. Steerenberg, J.J. Zonnenberg, J.A. Dormans, P.T. Joon, I.M. Wouters, L. vanBree, P.J. Scheepers, H. VanLoveren, Diesel exhaust particles induced release of interleukin 6 and 8 by (primed) human bronchial epithelial cells (BEAS 2B) in vitro, Experimental Lung Research, 1998, 24, 85, 100 |
Библиографическая ссылка |
R.D. Brook, B. Franklin, W. Cascio, Y. Hong, G. Howard, M. Lipsett, R. Luepker, M. Mittleman, J. Samet, S.C. Smith, Jr., I. Tager, Air pollution and cardiovascular disease: a statement for healthcare professionals from the Expert Panel on Population and Prevention Science of the American Heart Association, Circulation, 2004, 109, 21, 2655, 2671 |
Библиографическая ссылка |
R.D. Brook, J.R. Brook, S. Rajagopalan, Air pollution: the â Heartâ of the problem, Curr. Hypertens. Rep., 2003, 5, 1, 32, 39 |
Библиографическая ссылка |
K. Donaldson, N. Mills, W. MacNee, S. Robinson, D. Newby, Role of inflammation in cardiopulmonary health effects of PM, 6, Toxicol. Appl. Pharmacol., 2005, 207, 2 Suppl, 483, 488 |
Библиографическая ссылка |
J.F. Viles-Gonzalez, S.X. Anand, C. Valdiviezo, M.U. Zafar, R. Hutter, J. Sanz, T. Rius, M. Poon, V. Fuster, J.J. Badimon, Update in atherothrombotic disease, Mt. Sinai. J. Med., 2004, 71, 3, 197, 208 |
Библиографическая ссылка |
P. Libby, P.M. Ridker, A. Maseri, Inflammation and atherosclerosis 79, Circulation, 2002, 105, 9, 1135, 1143 |
Библиографическая ссылка |
F. Van Lente, Markers of inflammation as predictors in cardiovascular disease, Clin. Chim. Acta., 2000, 293, 1â 2, 31, 52 |
Библиографическая ссылка |
T. Suwa, J.C. Hogg, K.B. Quinlan, A. Ohgami, R. Vincent, S.F. van EEDEN, Particulate air pollution induces progression of atherosclerosis, J. Am. Coll. Cardiol., 2002, 39, 6, 935, 942 |
Библиографическая ссылка |
Q. Sun, A. Wang, X. Jin, A. Natanzon, D. Duquaine, R.D. Brook, J.G. Aguinaldo, Z.A. Fayad, V. Fuster, M. Lippmann, L.C. Chen, S. Rajagopalan, Long-term air pollution exposure and acceleration of atherosclerosis and vascular inflammation in an animal model, 1, JAMA, 2005, 294, 23, 3003, 3010 |
Библиографическая ссылка |
H.C. Routledge, S. Manney, R.M. Harrison, J.G. Ayres, J.N. Townend, Effect of inhaled sulphur dioxide and carbon particles on heart rate variability and markers of inflammation and coagulation in human subjects, 9, Heart, 2006, 92, 2, 220, 227 |
Библиографическая ссылка |
H.C. Routledge, J.G. Ayres, J.N. Townend, Why cardiologists should be interested in air pollution, Heart, 2003, 89, 12, 1383, 1388 |
Библиографическая ссылка |
L.C. Chen, J.S. Hwang, Effects of subchronic exposures to concentrated ambient particles (CAPs) in mice. IV. Characterization of acute and chronic effects of ambient air fine particulate matter exposures on heart-rate variability, Inhal. Toxicol., 2005, 17, 4â 5, 209, 216 |
Библиографическая ссылка |
A. Nemmar, M.F. Hoylaerts, P.H. Hoet, B. Nemery, Possible mechanisms of the cardiovascular effects of inhaled particles: systemic translocation and prothrombotic effects, Toxicol. Lett., 2004, 149, 1-3, 243, 253 |
Библиографическая ссылка |
K. Donaldson, N. Mills, W. MacNee, S. Robinson, D.E. Newby, Role of inflammation in cardiopulmonary health effects of PM, Toxicol. Appl. Pharmacol., 2005 |
Библиографическая ссылка |
W. Kreyling, M. Semmler, F. Erbe, P. Mayer, S. Takenaka, G. Oberdorster, A. Ziesenis, Minute translocation of inhlaed ultrafine insoluble iridium particles from lung epithelium to extrapulmonary tissues, Ann. Occup. Hyg., 2002, 46, Suppl 1, 223, 226 |
Библиографическая ссылка |
A. Nemmar, H. Vanbilloen, M.F. Hoylaerts, P.H. Hoet, A. Verbruggen, B. Nemery, Passage of intratracheally instilled ultrafine particles from the lung into the systemic circulation in hamster, Am. J. Respir. Crit. Care Med., 2001, 164, 9, 1665, 1668 |
Библиографическая ссылка |
A. Nemmar, P.H. Hoet, D. Dinsdale, J. Vermylen, M.F. Hoylaerts, B. Nemery, Diesel exhaust particles in lung acutely enhance experimental peripheral thrombosis, Circulation, 2003, 107, 8, 1202, 1208 |
Библиографическая ссылка |
N.L. Mills, H. Tornqvist, S.D. Robinson, M. Gonzalez, K. Darnley, W. MacNee, N.A. Boon, K. Donaldson, A. Blomberg, T. Sandstrom, D.E. Newby, Diesel exhaust inhalation causes vascular dysfunction and impaired endogenous fibrinolysis, 2, Circulation, 2005, 112, 25, 3930, 3936 |
Библиографическая ссылка |
B. Bellmann, H. Muhle, O. Creutzenberg, R. Mermelstein, Irreversible pulmonary changes induced in rat lung by dust overload, Environmental Health Perspectives., 1992, 97, 189, 191 |
Библиографическая ссылка |
P.E. Morrow, Dust overloading of the lungs: update and appraisal, Toxicol. Appl. Pharmacol., 1992, 113, 1, 1, 12 |
Библиографическая ссылка |
J.L. Mauderly, Y.S. Cheng, M.B. Snipes, Particle overload in toxicological studies - friend or foe, Journal Of Aerosol Medicine-Deposition Clearance And Effects In The Lung, 1990, 3, Suppl 1, S169, S187 |
Библиографическая ссылка |
P.E. Morrow, Possible mechanisms to explain dust overloading of the lungs, Fundam. Appl. Toxicol., 1988, 10, 3, 369, 384 |
Библиографическая ссылка |
P.E. Morrow, J.K. Haseman, C.H. Hobbs, K.E. Driscoll, V. Vu, G. Oberdorster, The maximum tolerated dose for inhalation bioassays - toxicity vs overload, Fundamental And Applied Toxicology, 1996, 29 |
Библиографическая ссылка |
G. Oberdorster, Lung particle overload - implications for occupational exposures to particles, Regulatory Toxicology And Pharmacology, 1995, 21 |
Библиографическая ссылка |
C.L. Tran, D. Buchanan, R.T. Cullen, A. Searl, A.D. Jones, K. Donaldson, Inhalation of poorly soluble particles. II. Influence of particle surface area on inflammation and clearance, Inhal. Toxicol., 2000, 12, 12, 1113, 1126 |
Библиографическая ссылка |
R.T. Cullen, C.L. Tran, D. Buchanan, J.M. Davis, A. Searl, A.D. Jones, K. Donaldson, Inhalation of poorly soluble particles, 1, Differences in inflammatory response and clearance during exposure. Inhal. Toxicol., 2000, 12, 12, 1089, 1111 |
Библиографическая ссылка |
K.E. Driscoll, Role of inflammation in the development of rat lung tumors in response to chronic particle exposure, Inhalation Toxicology, 1996, 8, suppl, 139, 153 |
Библиографическая ссылка |
G. Oberdorster, J. Ferin, S. Soderholm, R. Gelein, R. Baggs, P.E. Morrow, lncreased pulmonary toxicity of inhaled ultrafine particles: due to overload alone, Inhal. Toxicol., 1999, 38, 295, 302 |
Библиографическая ссылка |
P.S. Gilmour, A. Ziesenis, E.R. Morrison, M.A. Vickers, E.M. Drost, I. Ford, E. Karg, C. Mossa, A. Schroeppel, G.A. Ferron, J. Heyder, M. Greaves, W. MacNee, K. Donaldson, Pulmonary and systemic effects of short-term inhalation exposure to ultrafine carbon black particles, Toxicol. Appl. Pharmacol., 2004, 195, 1, 35, 44 |
Библиографическая ссылка |
L.C. Renwick, D. Brown, A. Clouter, K. Donaldson, Increased inflammation and altered macrophage chemotactic responses caused by two ultrafine particle types, Occup. Environ. Med., 2004, 61, 5, 442, 447 |
Библиографическая ссылка |
D. Hohr, Y. Steinfartz, R.P. Schins, A.M. Knaapen, G. Martra, B. Fubini, P.J. Borm, 2, Int. J. Hyg. Environ. Health, 2002, 205, 3, 239, 244 |
Библиографическая ссылка |
R. Duffin, A. Clouter, D. Brown, C.L. Tran, W. MacNee, V. Stone, K. Donaldson, The importance of surface area and specific reactivity in the acute pulmonary inflammatory response to particles, Ann. Occup. Hyg., 2002, 46, Suppl 1, 242, 245 |
Библиографическая ссылка |
M.R. Wilson, J.H. Lightbody, K. Donaldson, J. Sales, V. Stone, Interactions between ultrafine particles and transition metals in vivo and in vitro, Toxicol. Appl. Pharmacol., 2002, 184, 3, 172, 179 |
Библиографическая ссылка |
V. Stone, J. Shaw, D.M. Brown, W. MacNee, S.P. Faux, K. Donaldson, The role of oxidative stress in the prolonged inhibitory effect of ultrafine carbon black on epithelial cell function, Toxicol. In Vitro, 1998, 12, 649, 659 |
Библиографическая ссылка |
I. Beck-Speier, N. Dayal, E. Karg, K.L. Maier, G. Schumann, H. Schulz, M. Semmler, S. Takenaka, K. Stettmaier, W. Bors, A. Ghio, J.M. Samet, J. Heyder, Oxidative stress and lipid mediators induced in alveolar macrophages by ultrafine particles, Free Radic. Biol. Med., 2005, 38, 8, 1080, 1092 |
Библиографическая ссылка |
V. Stone, M. Tuinman, J.E. Vamvakopoulos, J. Shaw, D. Brown, S. Petterson, S.P. Faux, P. Borm, W. MacNee, F. Michaelangeli, K. Donaldson, Increased calcium influx in a monocytic cell line on exposure to ultrafine carbon black, Eur. Respir. J., 2000, 15, 2, 297, 303 |
Библиографическая ссылка |
D.M. Brown, K. Donaldson, P.J. Borm, R.P. Schins, M. Dehnhardt, P. Gilmour, L.A. Jimenez, V. Stone, Calcium and ROS-mediated activation of transcription factors and TNF-alpha cytokine gene expression in macrophages exposed to ultrafine particles, 5, Am. J. Physiol. Lung. Cell. Mol. Physiol., 2004, 286, 2, L344, L353 |
Библиографическая ссылка |
J. Tamaoki, K. lsono, K. Takeyama, E. Tagaya, J. Nakata, A. Nagai, Ultrafine carbon black particles stimulate proliferation of human airway epithelium via EGF receptor-mediated signaling pathway, 1, Am. J. Physiol. Lung. Cell. Mol. Physiol., 2004, 287, 6, L1127, L1133 |
Библиографическая ссылка |
C.R. Timblin, A. Shukla, I. Berlanger, K.A. Berube, A. Churg, B.T. Mossman, Ultrafine airborne particles cause increases in protooncogene expression and proliferation in alveolar epithelial cells, Toxicol. Appl. Pharmacol., 2002, 179, 2, 98, 104 |
Библиографическая ссылка |
G. Oberdorster, Z. Sharp, A.P. Elder, R. Gelein, W. Kreyling, C. Cox, Translocation of inhaled ultratine particles to the brain, Inhal. Toxicol., 2004, 16, 437, 445 |
Библиографическая ссылка |
W.S. Tin-Tin, S. Yamamoto, S. Ahmed, M. Kakeyama, T. Kobayashi, H. Fujimaki, Brain cytokine and chemokine mRNA expression in mice induced by intranasal instillation with ultrafine carbon black, 32, Toxicol. Lett., 2006, 163, 2, 153, 160 |
Библиографическая ссылка |
A. Radomski, P. Jurasz, D. onso-Escolano, M. Drews, M. Morandi, T. Malinski, M.W. Radomski, Nanoparticle-induced platelet aggregation and vascular thrombosis, 1, Br. J. Pharmacol., 2005 |
Библиографическая ссылка |
K. Donaldson, C.L. Tran, An introduction to the short-term toxicology of respirable industrial fibres, 5, Mutat. Res., 2004, 553, 1â 2, 5, 9 |
Библиографическая ссылка |
K. Nyberg, U. Johansson, I. Rundquist, P. Camner, Estimation of pH in individual alveolar macrophage phagolysosomes, Exp. Lung Res., 1989, 15, 4, 499, 510 |
Библиографическая ссылка |
T.W. Hesterberg, W.C. Miiller, R.P. Musselman, O. Kamstrup, R.D. Hamilton, P. Thevenaz, Biopersistence of man-made vitreous fibers and crocidolite asbestos in the rat lung following inhalation, Fundamental And Applied Toxicology, 1996, 29, 267, 279 |
Библиографическая ссылка |
J. Muller, F. Huaux, N. Moreau, P. Misson, J.F. Heilier, M. Delos, M. Arras, A. Fonseca, J.B. Nagy, D. Lison, Respiratory toxicity of multi-wall carbon nanotubes, 1, Toxicol. Appl. Pharmacol., 2005, 207, 3, 221, 231 |
Библиографическая ссылка |
A.D. Maynard, P.A. Baron, M. Foley, A.A. Shvedova, E.R. Kisin, V. Castranova, Exposure to carbon nanotube material: aerosol release during the handling of unrefined single-walled carbon nanotube material, J. Toxicol. Environ. Health A, 2004, 67, 1, 87, 107 |
Библиографическая ссылка |
C.W. Lam, J.T. James, R. McCluskey, R.L. Hunter, Pulmonary toxicity of single-wall carbon nanotubes in mice 7 and 90 days after intratracheal instillation, Toxicol. Sci., 2004, 77, 1, 126, 134 |
Библиографическая ссылка |
D.B. Warheit, B.R. Laurence, K.L. Reed, D.H. Roach, G.A. Reynolds, T.R. Webb, Comparative Pulmonary Toxicity Assessment of Single-wall Carbon Nanotubes in Rats, Toxicol. Sci., 2004, 77, 1, 117, 125 |
Библиографическая ссылка |
A.A. Shvedova, E.R. Kisin, R. Mercer, A.R. Murray, V.J. Johnson, A.I. Potapovich, Y.Y. Tyurina, O. Gorelik, S. Arepalli, D. Schwegler-Berry, A.F. Hubbs, J. Antonini, D.E. Evans, B.K. Ku, D. Ramsey, A. Maynard, V.E. Kagan, V. Castranova, P. Baron, Unusual inflammatory and fibrogenic pulmonary responses to single-walled carbon nanotubes in mice, 1, Am. J. Physiol. Lung. Cell. Mol. Physiol., 2005, 289, 5, L698, L708 |
Библиографическая ссылка |
N.A. Monteiro-Riviere, R.J. Nemanich, A.O. Inman, Y.Y. Wang, J.E. Riviere, Multi-walled carbon nanotube interactions with human epidermal keratinocytes, 8, Toxicol. Lett., 2005, 155, 3, 377, 384 |
Библиографическая ссылка |
A.A. Shvedova, V. Castranova, E.R. Kisin, D. Schwegler-Berry, A.R. Murray, V.Z. Gandelsman, A. Maynard, P. Baron, Exposure to carbon nanotube material: assessment of nanotube cytotoxicity using human keratinocyte cells, J. Toxicol. Environ. Health. A, 2003, 66, 20, 1909, 1926 |
Библиографическая ссылка |
G. Jia, H. Wang, L. Yan, X. Wang, R. Pei, T. Yan, Y. Zhao, X. Guo, Cytotoxicity of carbon nanomaterials: single-wall nanotube, multi-wall nanotube, and fullerene, 4, Environ. Sci. Technol., 2005, 39, 5, 1378, 1383 |
Библиографическая ссылка |
M. Bottini, S. Bruckner, K. Nika, N. Bottini, S. Bellucci, A. Magrini, A. Bergamaschi, T. Mustelin, Multi-walled carbon nanotubes induce T lymphocyte apoptosis, 1, Toxicol. Lett., 2006, 160, 2, 121, 126 |
Библиографическая ссылка |
D. Cui, F. Tian, C.S. Ozkan, M. Wang, H. Gao, Effect of single wall carbon nanotubes on human HEK293 cells, Toxicol. Lett., 2005, 155, 1, 73, 85 |
Библиографическая ссылка |
S.K. Manna, S. Sarkar, J. Barr, K. Wise, E.V. Barrera, O. Jejelowo, A.C. Rice-Ficht, G.T. Ramesh, Single-walled carbon nanotube induces oxidative stress and activates nuclear transcription factor-kappaB in human keratinocytes, 1, Nano. Lett., 2005, 5, 9, 1676, 1684 |
Библиографическая ссылка |
J.C. Pache, Y.M. Janssen, E.S. Walsh, T.R. Quinlan, C.L. Zanella, R.B. Low, D.J. Taatjes, B.T. Mossman, Increased epidermal growth factor-receptor protein in a human mesothelial cell line in response to long asbestos fibers, Am. J. Pathol., 1998, 152, 2, 333, 340 |
Библиографическая ссылка |
C.M. Sayes, F. Liang, J.L. Hudson, J. Mendez, W. Guo, J.M. Beach, V.C. Moore, C.D. Doyle, J.L. West, W.E. Billups, K.D. Ausman, V.L. Colvin, Functionalization density dependence of single-walled carbon nanotubes cytotoxicity in vitro, Toxicol. Lett., 2006, 161, 2, 135, 142 |
Библиографическая ссылка |
C.M. Sayes, J.D. Fortner, W. Guo, D. Lyon, V.L. Colvin, The differential cytotoxicity of water-soluble fullerenes, Nano. Letters., 2004, 4, 10, 1881, 1887 |
Библиографическая ссылка |
A. Isakovic, Z. Markovic, B. Todorovic-Markovic, N. Nikolic, S. Vranjes-Djuric, M. Mirkovic, M. Dramicanin, L. Harhaji, N. Raicevic, Z. Nikolic, V. Trajkovic, Distinct Cytotoxic Mechanisms of Pristine Versus Hydroxylated Fullerene, 1, Toxicol. Sci., 2006 |
Библиографическая ссылка |
S.M. Mirkov, A.N. Djordjevic, N.L. Andric, S.A. Andric, T.S. Kostic, G.M. Bogdanovic, M.B. Vojinovic-Miloradov, R.Z. Kovacevic, 60, Nitric Oxide, 2004, 11, 2, 201, 207 |
Библиографическая ссылка |
A.A. Corona-Morales, A. Castell, A. Escobar, R. Drucker-Colin, L. Zhang, 60, J. Neurosci. Res., 2003, 71, 1, 121, 126 |
Библиографическая ссылка |
N. Gharbi, M. Pressac, M. Hadchouel, H. Szwarc, S.R. Wilson, F. Moussa, [60]fullerene is a powerful antioxidant in vivo with no acute or subacute toxicity, 1, Nano. Lett., 2005, 5, 12, 2578, 2585 |
Библиографическая ссылка |
Y.T. Lee, L.Y. Chiang, W.J. Chen, H.C. Hsu, Water-soluble Hexasulfobutyl[60]fullerene inhibit low-density lipoprotein oxidation in aqueous and lipophilic phases, 11, Proc. Soc. Exp. Biol. Med., 2000, 224, 2, 69, 75 |
Библиографическая ссылка |
R. Hardman, A toxicologic review of quantum dots: toxicity depends on physicochemical and environmental factors, 2, Environ. Health Perspect., 2006, 114, 2, 165, 172 |
Библиографическая ссылка |
J. Lovric, H.S. Bazzi, Y. Cuie, G.R. Fortin, F.M. Winnik, D. Maysinger, Differences in subcellular distribution and toxicity of green and red emitting CdTe quantum dots, J. Mol. Med., 2005, 83, 5, 377, 385 |
Библиографическая ссылка |
B. Ballou, B.C. Lagerholm, L.A. Ernst, M.P. Bruchez, A.S. Waggoner, Noninvasive imaging of quantum dots in mice, 2, Bioconjug. Chem., 2004, 15, 1, 79, 86 |
Библиографическая ссылка |
B. Dubertret, P. Skourides, D.j. Norris, V. Noireaux, A.H. Brivanlou, A. Libchaber, In vivo imaging of quantum dots encapsulated in phospholipid micelles, 1, Science, 2002, 298, 5599, 1759, 1762 |
Библиографическая ссылка |
D.R. Larson, W.R. Zipfel, R.M. Williams, S.W. Clark, M.P. Bruchez, F.W. Wise, W.W. Webb, Water-soluble quantum dots for multiphoton fluorescence imaging in vivo, 2, Science, 2003, 300, 5624, 1434, 1436 |
Библиографическая ссылка |
K.J. Soto, A. Carrasco, T.G. Powell, K.M. Garza, L.E. Murr, Comparative in vitro cytotoxicity assessment of some manufactured nanoparticulate materials characterised by transmission electron microscopy, J. Nanoparticle Res., 2005, 7, 145, 169 |
Библиографическая ссылка |
S.M. Hussain, K.L. Hess, J.M. Gearhart, K.T. Geiss, J.J. Schlager, In vitro toxicity of nanoparticles in BRL 3A rat liver cells, 1, Toxicol. In vitro, 2005, 19, 7, 975, 983 |
Библиографическая ссылка |
Z. Chen, H. Meng, G. Xing, C. Chen, Y. Zhao, G. Jia, T. Wang, H. Yuan, C. Ye, F. Zhao, Z. Chai, C. Zhu, X. Fang, B. Ma, L. Wan, Acute toxicological effects of copper nanoparticles in vivo, 1, Toxicol. Lett., 2005 |
Библиографическая ссылка |
C.A. Dick, D.M. Brown, K. Donaldson, V. Stone, The role of free radicals in the toxic and inflammatory effects of four different ultrafine particle types, Inhal. Toxicol., 2003, 15, 1, 39, 52 |
Библиографическая ссылка |
K. Donaldson, P.H. Beswick, P.S. Gilmour, Free radial activity associated with the surface of particles: a unifying factor in determining biological activity, Toxicol. Lett., 1996, 88, 1â 3, 293, 298 |
Библиографическая ссылка |
C.A. Dick, D.M. Brown, K. Donaldson, V. Stone, The role of free radicals in the toxic and inflammatory effects of four different ultrafine particle types, Inhal. Toxicol., 2003, 15, 1, 39, 52 |