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1915 RECORDS FOUND
INDEX TITLE AUTHORS PUBLICATION ABSTRACT
21/45 Lipid peroxidation metabolites associated with biomarkers of inflammation and oxidation stress in workers handling carbon nanotubes and metal oxide nanoparticles. Wu,W.T.; Jung,W.T.; Lee,H.L. Nanotoxicology, 15(5): 577-587. abstract
21/44 Inflammatory Response, Reactive Oxygen Species Production and DNA Damage in Mice after Intrapleural Exposure to Carbon Nanotubes. Wils,R.Sø.; Jacobsen,N.R.; Vogel,U.; Roursgaard,M.; Møller,P. Toxicological Sciences, 183(1): 184-194. abstract
21/43 Reactive oxygen species production, genotoxicity and telomere length in FE1-Muta™Mouse lung epithelial cells exposed to carbon nanotubes. Wils,R.S.; Jacobsen,N.R.; Di Ianni,E.; Roursgaard,M.; Møller,P. Nanotoxicology, 15(5): 661-672. abstract
21/42 Toxicity evaluation of mesoporous silica particles Santa Barbara No. 15 amorphous in human umbilical vein endothelial cells: influence of particle morphology Teng,W.; Yang,Z.; Wang,S.; Xiong,D.; Chen,Y.; Wu,Z. Journal of Applied Toxicology, 41(9): 1467-1478. abstract
21/41 Reply to the Comment on Critical Choices in Predicting Stone Wool Biodurability: Lysosomal Fluid Compositions and Binder Effects. Sauer,U.G.; Werle,K.; Waindok,H.; Hirth,S.; Hachmöller,O.; Wohlleben,W. Chemical Research in Toxicology, 34(7): 1697-1698.
paper
21/40 Critical Choices in Predicting Stone Wool Biodurability: Lysosomal Fluid Compositions and Binder Effects. Sauer, U.G; Werle, K.; Waindok, H.; Hirth, S.; Hachmöller, O.; Wohlleben, W. Chemical Research in Toxicology, 34(3): 780-792. abstract
21/39 Assessment of the Skin and Heart Tissue Damage Following Inhalation of Carbon Nanotubes in Wistar Rats Using Isolated Mitochondria. Samiei, F.; Seydi, E.; Dousti, F.; Hayati, A.; H Shirazi, F.; Pourahmad Jaktaji, J. Iranian Journal of Pharmaceutical Sciences, 17(1): 69-78.
paper
21/38 Cellular senescence as a response to multiwalled carbon nanotube (MWCNT) exposure in human mesothelial cells. Reamon-Buettner,S.M.; Hackbarth,A.; Leonhardt,A.; Braun,A.; Ziemann,C. Mechanisms of Ageing and Development, 193: 111412. abstract
21/37 Multiple pathways of alveolar macrophage death contribute to pulmonary inflammation induced by silica nanoparticles. Park,E.J.; Kang,M.S.; Jin,S.W.; Lee,T.G.; Lee,G.H.; Kim,D.W.; Lee,E.W.; Park,J.; Choi,I.; Pak,Y.K. Nanotoxicology, 15(8): 1087-1101. abstract
21/36 Carbon Nanotube Exposure Triggers a Cerebral Peptidomic Response: Barrier Compromise, Neuroinflammation, and a Hyperexcited State. Mostovenko,E.; Saunders,S.; Muldoon,P.P.; Bishop,L.; Campen,M.J.; Erdely,A.; Ottens,A.K. Toxicological Sciences, 182(1): 107-119.
paper
21/35 Health effects after inhalation of micro- and nano-sized zinc oxide particles in human volunteers. Monse,C.; Raulf,M.; Jettkant,B.; van Kampen,V.; Kendzia,B.; Schurmeyer,L.; Seifert,C.E.; Marek,E.M.; Westphal,G.; Rosenkranz,N.; Merget,R.; Bruning,T.; Bunger,J. Archives of Toxicology, 95(1): 53-65
paper
21/34 Emissions and exposures of graphene nanomaterials, titanium dioxide nanofibers, and nanoparticles during down-stream industrial handling. Loven,K.; Franzen,S.M.; Isaxon,C.; Messing,M.E.; Martinsson,J.; Gudmundsson,A.; Pagels,J.; Hedmer,M.; NanoLund Journal of Exposure Science & Environmental Epidemiology, 31(4): 736-752
paper
21/33 Quality assurance for nanomaterial inhalation toxicity testing Lee,S.K.; Jo,M.S.; Kim,H.P.; Kim,J.C.; Yu,I.J. Inhalation Toxicology, 33(5): 161-167. abstract
21/32 miR221 regulates cell migration by targeting annexin a1 expression in human mesothelial MeT-5A cells neoplastic-like transformed by multi-walled carbon nanotube Ju,L.; Zhu,L.; Wu,H.; Yu,M.; Yin,X.; Jia,Z.; Feng,L.; Ying,S.; Xia,H.; Zhang,S.; Lou,J.; Yang,J. Genes and Environment : The Official Journal of the Japanese Environmental Mutagen Society, 43(1): 34-021-00209-y.
paper
21/31 Safe-by-design strategies for lowering the genotoxicity and pulmonary inflammation of multiwalled carbon nanotubes: Reduction of length and the introduction of COOH groups. Hadrup,N.; Knudsen,K.B.; Carriere,M.; Mayne-L’Hermite,M.; Bobyk,L.; Allard,S.; Miserque,F.; Pibaleau,B.; Pinault,M.; Wallin,H.; Vogel,U. Environmental Toxicology and Pharmacology, 87: 103702.
paper
21/30 Adaption of Lung Fibroblasts to Fluoro-Edenite Fibers: Evaluation of Molecular and Physiological Dynamics. Graziano,A.C.E.; Ledda,C.; Loreto,C.; Cardile,V. Cellular Physiology and Biochemistry : International Journal of Experimental Cellular Physiology, Biochemistry, and Pharmacology, 55(3): 327-343.
paper
21/29 Length difference of multi-walled carbon nanotubes generates differential cytotoxic responses Do,N.T.; Kim,S.; Kwak,M.; Lee,T.G.; Jo,D.-G.; Lee,S.-W.; Kim,S.-H. Journal of Applied Toxicology, 41(9): 1414-1424. abstract
21/28 In vitro-in vivo correlations of pulmonary inflammogenicity and genotoxicity of MWCNT Di Ianni,E.; Erdem,J.S.; Moller,P.; Sahlgren,N.M.; Poulsen,S.S.; Knudsen,K.B.; Zienolddiny,S.; Saber,A.T.; Wallin,H.; Vogel,U.; Jacobsen,N.R. Particle and Fibre Toxicology, 18(1): 25-021-00413-2.
paper
21/27 Statins repress needle-like carbon nanotube- or cholesterol crystal-stimulated IL-1β production by inhibiting the uptake of crystals by macrophages. Cui,H.; Soga,K.; Tamehiro,N.; Adachi,R.; Hachisuka,A.; Hirose,A.; Kondo,K.; Nishimaki-Mogami,T. Biochemical Pharmacology, 188. abstract
21/26 Nanomaterials-induced toxicity on cardiac myocytes and tissues, and emerging toxicity assessment techniques. Cheng,Y.; Chen,Z.; Yang,S.; Liu,T.; Yin,L.; Pu,Y.; Liang,G. Science of the Total Environment, 800: 149584. abstract
21/25 Toxicity of iron nanoparticles towards primary cultures of human bronchial epithelial cells. Canivet,L.; Denayer,F-O.; Dubot,P.; Garçon, G.; Lo Guidice, J.-M. Journal of Applied Toxicology, 41(2): 203-215. abstract
21/24 Multi-walled carbon nanotubes induce airway hyperresponsiveness in human bronchi by stimulating sensory C-fibers and increasing the release of neuronal acetylcholine Calzetta,L.; Pietroiusti,A.; Page,C.; Bussolati,O.; Chetta,A.; Facciolo,F.; Rogliani,P. Expert Review of Respiratory Medicine, 15(11): 1473-1481. abstract
21/23 Investigating biological effects of multidimensional carboxylated carbon-based nanomaterials on human lung A549 cells revealed via non-targeted metabolomics approach. Zhang,D.; Zhang,L.; Zheng,W.; Wu,F.; Cheng,J.; Yang,H.; Gong,M. Nanotechnology, 32(1): 015704-6528/abb55b. abstract
21/22 [Research progress of refractory ceramic fiber's damage to human respiratory system]. Yang,S.W.; Zhu,X.J.; Ma,W.J. Zhonghua Lao Dong Wei Sheng Zhi Ye Bing Za Zhi = Zhonghua Laodong Weisheng Zhiyebing Zazhi = Chinese Journal of Industrial Hygiene and Occupational Diseases, 39(5): 393-396. [Chinese] abstract
21/21 Identification of four methylation-driven genes as candidate biomarkers for monitoring single-walled carbon nanotube-induced malignant transformation of the lung. Xie, D.; Luo, X. Toxicology and Applied Pharmacology, 412: 115391. abstract
21/20 Lipid peroxidation metabolites associated with biomarkers of inflammation and oxidation stress in workers handling carbon nanotubes and metal oxide nanoparticles. Wu,W.T.; Jung,W.T.; Lee,H.L. Nanotoxicology, 15(5): 577-587. abstract
21/19 Reactive oxygen species production, genotoxicity and telomere length in FE1-MutaMouse lung epithelial cells exposed to carbon nanotubes. Wils,R.S.; Jacobsen,N.R.; Di Ianni,E.; Roursgaard,M.; Moller,P. Nanotoxicology, 15(5): 661-672. abstract
21/18 Postchronic Single-Walled Carbon Nanotube Exposure Causes Irreversible Malignant Transformation of Human Bronchial Epithelial Cells through DNA Methylation Changes. Wang,J.; Tian,X.; Zhang,J.; Tan,L.; Ouyang,N.; Jia,B.; Chen,C.; Ge,C.; Li,J. ACS Nano, 15(4): 7094-7104. abstract
21/17 Interim Report of the 4-Week Interval Intermittent Whole Body Inhalation Study on Multiwalled Carbon Nanotube in Mice. Taquahashi, Y.; Yokota, S.; Hojyo, M.; Morita, K.; Tsuji, M.; Suga, K.; Kuwagata, M.; Hirose, A.; Kanno, J. The Toxicologist: Supplement to Toxicological Sciences, 180(S1): 117. Abstract no. 2194. Presented at the 60th Annual Meeting of the Society of Toxicology, held virtually March 12–26, 2021. abstract
21/16 Osteopontin mRNA expression by rat mesothelial cells exposed to multi-walled carbon nanotubes as a potential biomarker of chronic neoplastic transformation in vitro. Sridharan,S.; Taylor-Just,A.; Bonner,J.C. Toxicology in Vitro, 73. abstract
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