The carcinogenic effect of various multi-walled carbon nanotubes (MWCNTs) after intraperitoneal injection in rats
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Heinrich Ernst | Otto Creutzenberg | Dirk Schaudien | A. Leonhardt | S. Rittinghausen | H. Ernst | O. Creutzenberg | U. Heinrich | Susanne Rittinghausen | Anja Hackbarth | Uwe Heinrich | Albrecht Leonhardt | D. Schaudien | A. Hackbarth
[1] Riping Chen,et al. [Guidelines for pathologic diagnosis of malignant mesothelioma--2012 update of the consensus statement from the International Mesothelioma Interest Group]. , 2015, Zhonghua lao dong wei sheng zhi ye bing za zhi = Zhonghua laodong weisheng zhiyebing zazhi = Chinese journal of industrial hygiene and occupational diseases.
[2] A. Leonhardt,et al. The carcinogenic effect of various multi-walled carbon nanotubes (MWCNTs) after intraperitoneal injection in rats , 2014, Particle and Fibre Toxicology.
[3] S. Peddada,et al. Spontaneous Mesotheliomas in F344/N Rats Are Characterized by Dysregulation of Cellular Growth and Immune Function Pathways , 2014, Toxicologic pathology.
[4] L. Mecklenburg,et al. Proliferative and Non-Proliferative Lesions of the Rat and Mouse Soft Tissue, Skeletal Muscle and Mesothelium , 2014, Journal of toxicologic pathology.
[5] C. Dinu,et al. Genotoxicity of multi-walled carbon nanotubes at occupationally relevant doses , 2014, Particle and Fibre Toxicology.
[6] W. McKinney,et al. Promotion of lung adenocarcinoma following inhalation exposure to multi-walled carbon nanotubes , 2014, Particle and Fibre Toxicology.
[7] Tatyana Chernova,et al. Pulmonary toxicity of carbon nanotubes and asbestos - similarities and differences. , 2013, Advanced drug delivery reviews.
[8] R. Hamilton,et al. Effect of MWCNT size, carboxylation, and purification on in vitro and in vivo toxicity, inflammation and lung pathology , 2013, Particle and Fibre Toxicology.
[9] S. Toyokuni,et al. Intraperitoneal administration of tangled multiwalled carbon nanotubes of 15 nm in diameter does not induce mesothelial carcinogenesis in rats , 2013, Pathology international.
[10] B. van Ravenzwaay,et al. Comparative inhalation toxicity of multi-wall carbon nanotubes, graphene, graphite nanoplatelets and low surface carbon black , 2013, Particle and Fibre Toxicology.
[11] Toshinori Yoshida,et al. Malignant Peritoneal Mesothelioma with a Sarcomatoid Growth Pattern and Signet-Ring-Like Structure in a Female F344 Rat , 2013, Journal of toxicologic pathology.
[12] Y. Sekido,et al. A Novel Targeting Therapy of Malignant Mesothelioma Using Anti-Podoplanin Antibody , 2013, The Journal of Immunology.
[13] N. Ordóñez. Mesothelioma with signet-ring cell features: report of 23 cases , 2013, Modern Pathology.
[14] Maurizio Prato,et al. Asbestos-like pathogenicity of long carbon nanotubes alleviated by chemical functionalization. , 2013, Angewandte Chemie.
[15] I. Kennedy,et al. Novel lanthanide-labeled metal oxide nanoparticles improve the measurement of in vivo clearance and translocation , 2013, Particle and Fibre Toxicology.
[16] M. Clift,et al. Carbon nanotubes: an insight into the mechanisms of their potential genotoxicity. , 2012, Swiss medical weekly.
[17] Adriele Prina-Mello,et al. The threshold length for fiber-induced acute pleural inflammation: shedding light on the early events in asbestos-induced mesothelioma. , 2012, Toxicological sciences : an official journal of the Society of Toxicology.
[18] K. Machida,et al. Carcinogenicity evaluation for the application of carbon nanotubes as biomaterials in rasH2 mice , 2012, Scientific Reports.
[19] Peter Wick,et al. Pulmonary surfactant coating of multi-walled carbon nanotubes (MWCNTs) influences their oxidative and pro-inflammatory potential in vitro , 2012, Particle and Fibre Toxicology.
[20] J. Kanno,et al. Dose-dependent mesothelioma induction by intraperitoneal administration of multi-wall carbon nanotubes in p53 heterozygous mice , 2012, Cancer science.
[21] B. Jasani,et al. Mesothelioma not associated with asbestos exposure. , 2012, Archives of pathology & laboratory medicine.
[22] R. Brown,et al. Mechanisms in Fibre Carcinogenesis , 2012, NATO ASI Series.
[23] S. Toyokuni,et al. Diameter and rigidity of multiwalled carbon nanotubes are critical factors in mesothelial injury and carcinogenesis , 2011, Proceedings of the National Academy of Sciences.
[24] M. Jaurand,et al. Role of Mutagenicity in Asbestos Fiber-Induced Carcinogenicity and Other Diseases , 2011, Journal of toxicology and environmental health. Part B, Critical reviews.
[25] V. Castranova,et al. Nanotoxicology—A Pathologist’s Perspective , 2011, Toxicologic pathology.
[26] Gianmario Martra,et al. High aspect ratio materials: role of surface chemistry vs. length in the historical “long and short amosite asbestos fibers” , 2010, Inhalation toxicology.
[27] J. Pauluhn. Multi-walled carbon nanotubes (Baytubes): approach for derivation of occupational exposure limit. , 2010, Regulatory toxicology and pharmacology : RTP.
[28] Jicheng Li,et al. Recent Advances in the Research of Lymphatic Stomata , 2010, Anatomical record.
[29] Vincent Castranova,et al. Distribution and persistence of pleural penetrations by multi-walled carbon nanotubes , 2010, Particle and Fibre Toxicology.
[30] Craig A. Poland,et al. Asbestos, carbon nanotubes and the pleural mesothelium: a review of the hypothesis regarding the role of long fibre retention in the parietal pleura, inflammation and mesothelioma , 2010, Particle and Fibre Toxicology.
[31] C. Varga,et al. Carbon nanotubes induce granulomas but not mesotheliomas. , 2010, In vivo.
[32] A. Gown,et al. Guidelines for pathologic diagnosis of malignant mesothelioma: a consensus statement from the International Mesothelioma Interest Group. , 2009, Archives of pathology & laboratory medicine.
[33] M L Kashon,et al. Induction of aneuploidy by single‐walled carbon nanotubes , 2009, Environmental and molecular mutagenesis.
[34] A. Marchevsky. Application of immunohistochemistry to the diagnosis of malignant mesothelioma. , 2009, Archives of pathology & laboratory medicine.
[35] François Huaux,et al. Absence of carcinogenic response to multiwall carbon nanotubes in a 2-year bioassay in the peritoneal cavity of the rat. , 2009, Toxicological sciences : an official journal of the Society of Toxicology.
[36] Akihiko Hirose,et al. Induction of mesothelioma by a single intrascrotal administration of multi-wall carbon nanotube in intact male Fischer 344 rats. , 2009, The Journal of toxicological sciences.
[37] Craig A. Poland,et al. Carbon nanotubes introduced into the abdominal cavity of mice show asbestos-like pathogenicity in a pilot study. , 2008, Nature nanotechnology.
[38] J. Kanno,et al. Induction of mesothelioma in p53+/- mouse by intraperitoneal application of multi-wall carbon nanotube. , 2008, The Journal of toxicological sciences.
[39] Vincent Castranova,et al. A biocompatible medium for nanoparticle dispersion , 2008 .
[40] A. Moriondo,et al. Functional arrangement of rat diaphragmatic initial lymphatic network. , 2006, American journal of physiology. Heart and circulatory physiology.
[41] R. Aitken,et al. Carbon nanotubes: a review of their properties in relation to pulmonary toxicology and workplace safety. , 2006, Toxicological sciences : an official journal of the Society of Toxicology.
[42] A. Gown,et al. Evaluation of 12 antibodies for distinguishing epithelioid mesothelioma from adenocarcinoma: identification of a three-antibody immunohistochemical panel with maximal sensitivity and specificity , 2006, Modern Pathology.
[43] Jicheng Li,et al. Ultrastructural study of pleural lymphatic drainage unit and effect of nitric oxide on the drainage capacity of pleural lymphatic stomata in the rat. , 2004, Annals of anatomy = Anatomischer Anzeiger : official organ of the Anatomische Gesellschaft.
[44] W. Travis,et al. The new World Health Organization classification of lung tumours , 2001, European Respiratory Journal.
[45] R. Sorelle. US Department of Health and Human Services gives states wider latitude in choosing services to be covered by Medicaid. , 2001, Circulation.
[46] W. Wassilev,et al. Scanning and transmission electron microscopic study of visceral and parietal peritoneal regions in the rat. , 1999, Annals of anatomy = Anatomischer Anzeiger : official organ of the Anatomische Gesellschaft.
[47] Y. Shimosato,et al. Histological Typing of Lung and Pleural Tumours , 1999, World Health Organization.
[48] K. Donaldson,et al. Influence of fibre length, dissolution and biopersistence on the production of mesothelioma in the rat peritoneal cavity. , 1999, The Annals of occupational hygiene.
[49] M. Abu-Hijleh,et al. The role of the diaphragm in lymphatic absorption from the peritoneal cavity. , 1995, Journal of anatomy.
[50] R. J. Hill,et al. Intrapleural Administration of Fibres Induces Mesothelioma in Rats in the same Relative Order of Hazard as Occurs in Man after Exposure , 1992, Human & experimental toxicology.
[51] U. Mohr,et al. Atypical malignant mesotheliomas with osseous and cartilaginous differentiation after intraperitoneal injection of various types of mineral fibres in rats. , 1992, Experimental and toxicologic pathology : official journal of the Gesellschaft fur Toxikologische Pathologie.
[52] J. M. Davis,et al. Mesothelioma dose response following intraperitoneal injection of mineral fibres. , 1991, International journal of experimental pathology.
[53] R. Carter,et al. The pathological effects of subcutaneous injections of asbestos fibres in mice: migration of fibres to submesothelial tissues and induction of mesotheliomata. , 1968, International journal of cancer.
[54] M. Fassan,et al. Epithelial–mesenchymal transition in malignant mesothelioma , 2012, Modern Pathology.
[56] G. Pinkus,et al. The immunohistochemical characterization of sarcomatoid malignant mesothelioma of the pleura. , 2011, American journal of cancer research.
[57] N. Ordóñez. What are the current best immunohistochemical markers for the diagnosis of epithelioid mesothelioma? A review and update. , 2007, Human pathology.
[58] Quan-hong Yang,et al. Hydrogen adsorption/desorption behavior of multi-walled carbon nanotubes with different diameters , 2003 .
[59] Bernstein David,et al. Methods for the Determination of the Hazardous Properties for Human Health of Man Made Mineral Fibres (MMMF) , 1999 .
[60] G. Azzali. The transendothelial passage in the absorbing peripheral lymphatic vessel of the rodent diaphragm. , 1995, Italian journal of anatomy and embryology = Archivio italiano di anatomia ed embriologia.
[61] M. Roller,et al. Tumours by the Intraperitoneal and Intrapleural Routes and their Significance for the Classification of Mineral Fibres , 1991 .
[62] S. Takenaka,et al. Inhalation and injection experiments in rats to test the carcinogenicity of MMMF. , 1987, The Annals of occupational hygiene.
[63] B. Mossman,et al. Asbestos: mechanisms of toxicity and carcinogenicity in the respiratory tract. , 1983, Annual review of pharmacology and toxicology.