846
Views
150
CrossRef citations to date
0
Altmetric
Original Article

Acute pulmonary dose–responses to inhaled multi-walled carbon nanotubes

, , , , , , , , , , , , , , , , & show all
Pages 1179-1194 | Received 10 May 2012, Accepted 24 Jul 2012, Published online: 13 Sep 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (38)

Niels Hadrup, Nicklas Sahlgren, Nicklas R. Jacobsen, Anne T. Saber, Karin S. Hougaard, Ulla Vogel & Keld A. Jensen. (2023) Toxicity dose descriptors from animal inhalation studies of 13 nanomaterials and their bulk and ionic counterparts and variation with primary particle characteristics. Nanotoxicology 17:4, pages 338-371.
Read now
Tamara L. Young, David Scieszka, Jessica G. Begay, Selita N. Lucas, Guy Herbert, Katherine Zychowski, Russell Hunter, Raul Salazar, Andrew K. Ottens, Aaron Erdely, Haiwei Gu & Matthew J. Campen. (2023) Aging influence on pulmonary and systemic inflammation and neural metabolomics arising from pulmonary multi-walled carbon nanotube exposure in apolipoprotein E-deficient and C57BL/6 female mice. Inhalation Toxicology 35:3-4, pages 86-100.
Read now
Hélène Barthel, Sylvie Sébillaud, Mylène Lorcin, Henrik Wolff, Stéphane Viton, Frédéric Cosnier, Laurent Gaté & Carole Seidel. (2023) Needlelike, short and thin multi-walled carbon nanotubes: comparison of effects on wild type and p53+/− rat lungs. Nanotoxicology 17:3, pages 270-288.
Read now
Tina M. Sager, Christina M. Umbright, Gul Mehnaz Mustafa, Jenny R. Roberts, Marlene S. Orandle, Jared L. Cumpston, Walter G. McKinney, Theresa Boots, Michael L. Kashon & Pius Joseph. (2022) Pulmonary toxicity and gene expression changes in response to whole-body inhalation exposure to multi-walled carbon nanotubes in rats. Inhalation Toxicology 34:7-8, pages 200-218.
Read now
Masanori Horie & Yosuke Tabei. (2021) Role of oxidative stress in nanoparticles toxicity. Free Radical Research 55:4, pages 331-342.
Read now
Carole Seidel, Vadim Zhernovkov, Hilary Cassidy, Boris Kholodenko, David Matallanas, Frédéric Cosnier & Laurent Gaté. (2021) Inhaled multi-walled carbon nanotubes differently modulate global gene and protein expression in rat lungs. Nanotoxicology 15:2, pages 238-256.
Read now
Ali Hassan, Afraz Saeed, Samia Afzal, Muhammad Shahid, Iram Amin & Muhammad Idrees. (2020) Applications and hazards associated with carbon nanotubes in biomedical sciences. Inorganic and Nano-Metal Chemistry 50:9, pages 741-752.
Read now
Xiaopei Huang, Yijun Tian, Wenjing Shi, Jikuai Chen, Lang Yan, Lijun Ren, Xiaofang Zhang & Jiangbo Zhu. (2020) Role of inflammation in the malignant transformation of pleural mesothelial cells induced by multi-walled carbon nanotubes. Nanotoxicology 14:7, pages 947-967.
Read now
Matthew D. Wright, Alison J. Buckley & Rachel Smith. (2020) Estimates of carbon nanotube deposition in the lung: improving quality and robustness. Inhalation Toxicology 32:7, pages 282-298.
Read now
Jie Dong & Qiang Ma. (2019) Integration of inflammation, fibrosis, and cancer induced by carbon nanotubes. Nanotoxicology 13:9, pages 1244-1274.
Read now
W. Kyle Mandler, Chaolong Qi, Marlene S. Orandle, Khachatur Sarkisian, Robert R. Mercer, Aleksandr B. Stefaniak, Alycia K. Knepp, Lauren N. Bowers, Lori A. Battelli, Justine Shaffer, Sherri A. Friend, Yong Qian & Jennifer D. Sisler. (2019) Mouse pulmonary response to dust from sawing Corian®, a solid-surface composite material. Journal of Toxicology and Environmental Health, Part A 82:11, pages 645-663.
Read now
Andrij Holian, Raymond F. Hamilton$suffix/text()$suffix/text(), Zhequion Wu, Sanghamitra Deb, Kevin L. Trout, Zhiqian Wang, Rohit Bhargava & Somenath Mitra. (2019) Lung deposition patterns of MWCNT vary with degree of carboxylation. Nanotoxicology 13:2, pages 143-159.
Read now
Guoliang Li, Lihong Liang, Jingchao Yang, Lihai Zeng, Zhiwei Xie, Yizhou Zhong, Xiaolin Ruan, Ming Dong, Zhanhong Yang, Guanchao Lai, Weixin Huang, Aichu Yang, Jiabing Chen, Banghua Wu, Huaming Xu, Dezhi Meng, Shijie Hu, Lihua Xia, Xingfen Yang, Laiyu Li, Sahoko Ichihara, Gaku Ichihara, Hanlin Huang & Zhenlie Huang. (2018) Pulmonary hypofunction due to calcium carbonate nanomaterial exposure in occupational workers: a cross-sectional study. Nanotoxicology 12:6, pages 571-585.
Read now
Yke Jildouw Arnoldussen, Vidar Skaug, Mona Aleksandersen, Erik Ropstad, Kristine Haugen Anmarkrud, Elin Einarsdottir, Fang Chin-Lin, Cesilie Granum Bjørklund, Mayes Kasem, Einar Eilertsen, Ron N. Apte & Shanbeh Zienolddiny. (2018) Inflammation in the pleural cavity following injection of multi-walled carbon nanotubes is dependent on their characteristics and the presence of IL-1 genes. Nanotoxicology 12:6, pages 522-538.
Read now
Cody E. Nichols, Danielle L. Shepherd, Quincy A. Hathaway, Andrya J. Durr, Dharendra Thapa, Alaeddin Abukabda, Jinghai Yi, Timothy R. Nurkiewicz & John M. Hollander. (2018) Reactive oxygen species damage drives cardiac and mitochondrial dysfunction following acute nano-titanium dioxide inhalation exposure. Nanotoxicology 12:1, pages 32-48.
Read now
Yue Qin, Suning Li, Gan Zhao, Xuanhao Fu, Xueping Xie, Yiyi Huang, Xiaojing Cheng, Jinbin Wei, Huagang Liu & Zefeng Lai. (2017) Long-term intravenous administration of carboxylated single-walled carbon nanotubes induces persistent accumulation in the lungs and pulmonary fibrosis via the nuclear factor-kappa B pathway. International Journal of Nanomedicine 12, pages 263-277.
Read now
Vamsi K. Kodali, Jenny R. Roberts, Mohammad Shoeb, Michael G. Wolfarth, Lindsey Bishop, Tracy Eye, Mark Barger, Katherine A. Roach, Sherri Friend, Diane Schwegler-Berry, Bean T. Chen, Aleksandr Stefaniak, Kevin C. Jordan, Roy R. Whitney, Dale W. Porter & Aaron D. Erdely. (2017) Acute in vitro and in vivo toxicity of a commercial grade boron nitride nanotube mixture. Nanotoxicology 11:8, pages 1040-1058.
Read now
Todd A. Stueckle, Donna C. Davidson, Ray Derk, Peng Wang, Sherri Friend, Diane Schwegler-Berry, Peng Zheng, Nianqiang Wu, Vince Castranova, Yon Rojanasakul & Liying Wang. (2017) Effect of surface functionalizations of multi-walled carbon nanotubes on neoplastic transformation potential in primary human lung epithelial cells. Nanotoxicology 11:5, pages 613-624.
Read now
W. Kyle Mandler, Timothy R. Nurkiewicz, Dale W. Porter & I. Mark Olfert. (2017) Thrombospondin-1 mediates multi-walled carbon nanotube induced impairment of arteriolar dilation. Nanotoxicology 11:1, pages 112-122.
Read now
Eileen D. Kuempel, Marie-Claude Jaurand, Peter Møller, Yasuo Morimoto, Norihiro Kobayashi, Kent E. Pinkerton, Linda M. Sargent, Roel C. H. Vermeulen, Bice Fubini & Agnes B. Kane. (2017) Evaluating the mechanistic evidence and key data gaps in assessing the potential carcinogenicity of carbon nanotubes and nanofibers in humans. Critical Reviews in Toxicology 47:1, pages 1-58.
Read now
Patti C. Zeidler-Erdely, James M. Antonini, Terence G. Meighan, Shih-Houng Young, Tracy J. Eye, Mary Ann Hammer & Aaron Erdely. (2016) Comparison of cell counting methods in rodent pulmonary toxicity studies: automated and manual protocols and considerations for experimental design. Inhalation Toxicology 28:9, pages 410-420.
Read now
Bean T. Chen, Diane Schwegler-Berry, Amy Cumpston, Jared Cumpston, Sherri Friend, Samuel Stone & Michael Keane. (2016) Performance of a scanning mobility particle sizer in measuring diverse types of airborne nanoparticles: Multi-walled carbon nanotubes, welding fumes, and titanium dioxide spray. Journal of Occupational and Environmental Hygiene 13:7, pages 501-518.
Read now
Ivo Iavicoli, Luca Fontana & Gunnar Nordberg. (2016) The effects of nanoparticles on the renal system. Critical Reviews in Toxicology 46:6, pages 490-560.
Read now
Yasuo Morimoto, Hiroto Izumi, Yukiko Yoshiura, Taisuke Tomonaga, Byeong-Woo Lee, Takami Okada, Takako Oyabu, Toshihiko Myojo, Kazuaki Kawai, Kazuhiro Yatera, Manabu Shimada, Masaru Kubo, Kazuhiro Yamamoto, Shinichi Kitajima, Etsushi Kuroda, Masanori Horie, Kenji Kawaguchi & Takeshi Sasaki. (2016) Comparison of pulmonary inflammatory responses following intratracheal instillation and inhalation of nanoparticles. Nanotoxicology 10:5, pages 607-618.
Read now
Brandi N. Snyder-Talkington, Chunlin Dong, Dale W. Porter, Barbara Ducatman, Michael G. Wolfarth, Michael Andrew, Lori Battelli, Rebecca Raese, Vincent Castranova, Nancy L. Guo & Yong Qian. (2016) Multiwalled carbon nanotube-induced pulmonary inflammatory and fibrotic responses and genomic changes following aspiration exposure in mice: A 1-year postexposure study. Journal of Toxicology and Environmental Health, Part A 79:8, pages 352-366.
Read now
Antonis Christou, Anna A. Stec, Waqar Ahmed, Karin Aschberger & Valeria Amenta. (2016) A review of exposure and toxicological aspects of carbon nanotubes, and as additives to fire retardants in polymers. Critical Reviews in Toxicology 46:1, pages 74-95.
Read now
Savvina Chortarea, Martin J. D. Clift, Dimitri Vanhecke, Carola Endes, Peter Wick, Alke Petri-Fink & Barbara Rothen-Rutishauser. (2015) Repeated exposure to carbon nanotube-based aerosols does not affect the functional properties of a 3D human epithelial airway model. Nanotoxicology 9:8, pages 983-993.
Read now
Phoebe A. Stapleton, Cody E. Nichols, Jinghai Yi, Carroll R. McBride, Valerie C. Minarchick, Danielle L. Shepherd, John M. Hollander & Timothy R. Nurkiewicz. (2015) Microvascular and mitochondrial dysfunction in the female F1 generation after gestational TiO2 nanoparticle exposure. Nanotoxicology 9:8, pages 941-951.
Read now
Jie Dong & Qiang Ma. (2015) Advances in mechanisms and signaling pathways of carbon nanotube toxicity. Nanotoxicology 9:5, pages 658-676.
Read now
Tatsuya Kasai, Yumi Umeda, Makoto Ohnishi, Hitomi Kondo, Tetsuya Takeuchi, Shigetoshi Aiso, Tomoshi Nishizawa, Michiharu Matsumoto & Shoji Fukushima. (2015) Thirteen-week study of toxicity of fiber-like multi-walled carbon nanotubes with whole-body inhalation exposure in rats. Nanotoxicology 9:4, pages 413-422.
Read now
Katsuhide Fujita, Makiko Fukuda, Hiroko Fukui, Masanori Horie, Shigehisa Endoh, Kunio Uchida, Mototada Shichiri, Yasuo Morimoto, Akira Ogami & Hitoshi Iwahashi. (2015) Intratracheal instillation of single-wall carbon nanotubes in the rat lung induces time-dependent changes in gene expression. Nanotoxicology 9:3, pages 290-301.
Read now
Katsuhide Fujita, Makiko Fukuda, Shigehisa Endoh, Junko Maru, Haruhisa Kato, Ayako Nakamura, Naohide Shinohara, Kanako Uchino & Kazumasa Honda. (2015) Size effects of single-walled carbon nanotubes on in vivo and in vitro pulmonary toxicity. Inhalation Toxicology 27:4, pages 207-223.
Read now
Bianca M. Rotoli, Rita Gatti, Dania Movia, Massimiliano G. Bianchi, Luisana Di Cristo, Ivana Fenoglio, Fabio Sonvico, Enrico Bergamaschi, Adriele Prina-Mello & Ovidio Bussolati. (2015) Identifying contact-mediated, localized toxic effects of MWCNT aggregates on epithelial monolayers: a single-cell monitoring toxicity assay. Nanotoxicology 9:2, pages 230-241.
Read now
Takamasa Kido, Masashi Tsunoda, Tatsuya Kasai, Toshiaki Sasaki, Yumi Umeda, Hideki Senoh, Hiroyuki Yanagisawa, Masumi Asakura, Yoshiharu Aizawa & Shoji Fukushima. (2014) The increases in relative mRNA expressions of inflammatory cytokines and chemokines in splenic macrophages from rats exposed to multi-walled carbon nanotubes by whole-body inhalation for 13 weeks. Inhalation Toxicology 26:12, pages 750-758.
Read now
Tina M. Sager, Michael W. Wolfarth, Michael Andrew, Ann Hubbs, Sherri Friend, Teh-hsun Chen, Dale W. Porter, Nianqiang Wu, Feng Yang, Raymond F. Hamilton & Andrij Holian. (2014) Effect of multi-walled carbon nanotube surface modification on bioactivity in the C57BL/6 mouse model. Nanotoxicology 8:3, pages 317-327.
Read now
Xiaojia Wang, Ramakrishna Podila, Jonathan H Shannahan, Apparao M Rao & Jared M Brown. (2013) Intravenously delivered graphene nanosheets and multiwalled carbon nanotubes induce site-specific Th2 inflammatory responses via the IL-33/ST2 axis. International Journal of Nanomedicine 8, pages 1733-1748.
Read now
Raymond F. Hamilton$suffix/text()$suffix/text(), Chengcheng Xiang, Ming Li, Ibrahima Ka, Feng Yang, Dongling Ma, Dale W. Porter, Nianqiang Wu & Andrij Holian. (2013) Purification and sidewall functionalization of multiwalled carbon nanotubes and resulting bioactivity in two macrophage models. Inhalation Toxicology 25:4, pages 199-210.
Read now
Bean T. Chen, Diane Schwegler-Berry, Walter McKinney, Samuel Stone, Jared L. Cumpston, Sherri Friend, Dale W. Porter, Vincent Castranova & David G. Frazer. (2012) Multi-walled carbon nanotubes: sampling criteria and aerosol characterization. Inhalation Toxicology 24:12, pages 798-820.
Read now

Articles from other publishers (112)

Nalinrat Petpiroon, Woranan Netkueakul, Kanokwan Sukrak, Chen Wang, Yin Liang, Mengxue Wang, Yun Liu, Qiang Li, Rumaisa Kamran, Keiji Naruse, Sasitorn Aueviriyavit & Ken Takahashi. (2023) Development of lung tissue models and their applications. Life Sciences 334, pages 122208.
Crossref
Trine Berthing, Mercy Lard, Pernille H. Danielsen, Laura Abariute, Kenneth K. Barfod, Karl Adolfsson, Kristina B. Knudsen, Henrik Wolff, Christelle N. Prinz & Ulla Vogel. (2023) Pulmonary toxicity and translocation of gallium phosphide nanowires to secondary organs following pulmonary exposure in mice. Journal of Nanobiotechnology 21:1.
Crossref
Pius Joseph. 2023. Impact of Engineered Nanomaterials in Genomics and Epigenomics. Impact of Engineered Nanomaterials in Genomics and Epigenomics 187 215 .
Shanbin Xu, Xinlong Pang, Xinyu Zhang, Qian Lv, Meng Zhang, Jinping Wang, Nengyi Ni & Xiao Sun. (2023) Nanomaterials disrupting cell-cell junctions towards various diseases. Nano Research 16:5, pages 7053-7074.
Crossref
Payam Mohammadi & Asun Galera. (2023) Occupational exposure to nanomaterials: A bibliometric study of publications over the last decade. International Journal of Hygiene and Environmental Health 249, pages 114132.
Crossref
Ann F. Hubbs, Dale W. Porter, Robert R. Mercer, Vincent Castranova, Linda M. Sargent & Krishnan Sriram. 2023. Haschek and Rousseaux's Handbook of Toxicologic Pathology, Volume 3. Haschek and Rousseaux's Handbook of Toxicologic Pathology, Volume 3 797 838 .
Kamila Gawel. 2023. Functionalized Nanofibers. Functionalized Nanofibers 923 943 .
Taisuke Tomonaga, Chinatsu Nishida, Hiroto Izumi, Naoki Kawai, Ke-Yong Wang, Hidenori Higashi, Jun-Ichi Takeshita, Ryohei Ono, Kazuki Sumiya, Shota Fujii, Yuki Hata, Kazuo Sakurai, Toshiki Morimoto, Yasuyuki Higashi, Kei Yamasaki, Kazuhiro Yatera & Yasuo Morimoto. (2022) Crosslinked Structure of Polyacrylic Acid Affects Pulmonary Fibrogenicity in Rats. International Journal of Molecular Sciences 23:22, pages 13870.
Crossref
Jonathan Gonzalez, Cigdem Keles & Emily Sarver. (2022) On the Occurrence and Persistence of Coal-Mineral Microagglomerates in Respirable Coal Mine Dust. Mining, Metallurgy & Exploration 39:2, pages 271-282.
Crossref
Divya Praveen Ottoor. 2022. Handbook of Carbon Nanotubes. Handbook of Carbon Nanotubes 1975 2000 .
Ilnur Ishmukhametov & Rawil Fakhrullin. (2021) Dark-Field Hyperspectral Microscopy for Carbon Nanotubes Bioimaging. Applied Sciences 11:24, pages 12132.
Crossref
Tamara L. Young, Ekaterina Mostovenko, Jesse L. Denson, Jessica G. Begay, Selita N. Lucas, Guy Herbert, Katherine Zychowski, Russell Hunter, Raul Salazar, Ting Wang, Kelly Fraser, Aaron Erdely, Andrew K. Ottens & Matthew J. Campen. (2021) Pulmonary delivery of the broad-spectrum matrix metalloproteinase inhibitor marimastat diminishes multiwalled carbon nanotube-induced circulating bioactivity without reducing pulmonary inflammation. Particle and Fibre Toxicology 18:1.
Crossref
Christopher T. Migliaccio, Raymond F. HamiltonJrJr, Pamela K. Shaw, Joseph F. Rhoderick, Sanghamitra Deb, Rohit Bhargava, Jack R. Harkema & Andrij Holian. (2021) Respiratory and systemic impacts following MWCNT inhalation in B6C3F1/N mice. Particle and Fibre Toxicology 18:1.
Crossref
Kazunori Fujisawa, Yoong Ahm Kim, Takuya Hayashi, Kenji Takeuchi, Hiroyuki Muramatsu, Shuji Tsuruoka, Takashi Yanagisawa, Mauricio Terrones & Morinobu Endo. 2021. Industrial Carbon and Graphite Materials, Volume I. Industrial Carbon and Graphite Materials, Volume I 885 944 .
Fiona Murphy, Susan Dekkers, Hedwig Braakhuis, Lan Ma-Hock, Helinor Johnston, Gemma Janer, Luisana di Cristo, Stefania Sabella, Nicklas Raun Jacobsen, Agnes G. Oomen, Andrea Haase, Teresa Fernandes & Vicki Stone. (2021) An integrated approach to testing and assessment of high aspect ratio nanomaterials and its application for grouping based on a common mesothelioma hazard. NanoImpact 22, pages 100314.
Crossref
Enrico Bergamaschi, Giacomo Garzaro, Georgia Wilson Jones, Martina Buglisi, Michele Caniglia, Alessandro Godono, Davide Bosio, Ivana Fenoglio & Irina Guseva Canu. (2021) Occupational Exposure to Carbon Nanotubes and Carbon Nanofibres: More Than a Cobweb. Nanomaterials 11:3, pages 745.
Crossref
Haewon Kim, Jean Yoo, Yeon‐Mi Lim, Eun‐Ji Kim, Byung‐Il Yoon, Pilje Kim, Seung Do Yu, Ig‐Chun Eom & Ilseob Shim. (2020) Comprehensive pulmonary toxicity assessment of cetylpyridinium chloride using A549 cells and Sprague–Dawley rats. Journal of Applied Toxicology 41:3, pages 470-482.
Crossref
Divya Praveen Ottoor. 2020. Handbook of Carbon Nanotubes. Handbook of Carbon Nanotubes 1 26 .
Jie Dong. (2020) Signaling Pathways Implicated in Carbon Nanotube-Induced Lung Inflammation. Frontiers in Immunology 11.
Crossref
M. Esther Salinas, Denisse A. Gutiérrez, Armando Varela-Ramírez & Kristine M. Garza. (2020) Continuous Exposure to Low Doses of Ultrafine Black Carbon Reduces the Vitality of Immortalized Lung-Derived Cells and Activates Senescence. Journal of Toxicology 2020, pages 1-13.
Crossref
Hao Chen, Sara T. Humes, Melanie Rose, Sarah E. Robinson, Julia C. Loeb, Indu V. Sabaraya, L. Cody Smith, Navid B. Saleh, William L. Castleman, John A. Lednicky & Tara Sabo-Attwood. (2020) Hydroxyl functionalized multi-walled carbon nanotubes modulate immune responses without increasing 2009 pandemic influenza A/H1N1 virus titers in infected mice. Toxicology and Applied Pharmacology 404, pages 115167.
Crossref
Tobias Hammer, Panagiota Sachinidou, Xu He, Zhengyuan Pan & Yeon Kyoung Bahk. (2020) Advanced filtration and lung deposition models of airborne multi-walled carbon nanotubes for inhalation exposure assessment. NanoImpact 19, pages 100240.
Crossref
Jie Dong. (2020) Microenvironmental Alterations in Carbon Nanotube-Induced Lung Inflammation and Fibrosis. Frontiers in Cell and Developmental Biology 8.
Crossref
Christina Isaxon, Karin Lovén, Linus Ludvigsson, Sudhakar Sivakumar, Anders Gudmundsson, Maria E Messing, Joakim Pagels & Maria Hedmer. (2020) Workplace Emissions and Exposures During Semiconductor Nanowire Production, Post-production, and Maintenance Work. Annals of Work Exposures and Health 64:1, pages 38-54.
Crossref
Pranita K. Kabadi, April L. Rodd, Alysha E. Simmons, Norma J. Messier, Robert H. Hurt & Agnes B. Kane. (2019) A novel human 3D lung microtissue model for nanoparticle-induced cell-matrix alterations. Particle and Fibre Toxicology 16:1.
Crossref
Lina Zheng & Pramod Kulkarni. (2019) Real-Time Measurement of Airborne Carbon Nanotubes in Workplace Atmospheres. Analytical Chemistry 91:20, pages 12713-12723.
Crossref
Marina Senchukova. (2019) A Brief Review about the Role of Nanomaterials, Mineral-Organic Nanoparticles, and Extra-Bone Calcification in Promoting Carcinogenesis and Tumor Progression. Biomedicines 7:3, pages 65.
Crossref
Laurent Gaté, Kristina Bram Knudsen, Carole Seidel, Trine Berthing, Laëtitia Chézeau, Nicklas Raun Jacobsen, Sarah Valentino, Håkan Wallin, Sébastien Bau, Henrik Wolff, Sylvie Sébillaud, Mylène Lorcin, Stéphane Grossmann, Stéphane Viton, Hervé Nunge, Christian Darne, Ulla Vogel & Frédéric Cosnier. (2019) Pulmonary toxicity of two different multi-walled carbon nanotubes in rat: Comparison between intratracheal instillation and inhalation exposure. Toxicology and Applied Pharmacology 375, pages 17-31.
Crossref
Ivan V. Gmoshinsky, S. A. Khotimchenko, N. A. Riger & D. B. Nikityuk. (2019) Carbon nanotubes: mechanisms of the action, biological markers and evaluation of the (review of literature). Hygiene and sanitation 96:2, pages 176-186.
Crossref
Marina Senchukova, Olesya Tomchuk, Elena Shurygina, Sergey Letuta, Eskender Alidzhanov, Hike Nikiyan & Dmitry Razdobreev. (2019) Calcium Carbonate Nanoparticles Can Activate the Epithelial–Mesenchymal Transition in an Experimental Gastric Cancer Model. Biomedicines 7:1, pages 21.
Crossref
Matthew M Dahm, Stephen Bertke & Mary K Schubauer-Berigan. (2019) Predicting Occupational Exposures to Carbon Nanotubes and Nanofibers Based on Workplace Determinants Modeling. Annals of Work Exposures and Health 63:2, pages 158-172.
Crossref
Kristina B. Knudsen, Trine Berthing, Petra Jackson, Sarah S. Poulsen, Alicja Mortensen, Nicklas R. Jacobsen, Vidar Skaug, Józef Szarek, Karin S. Hougaard, Henrik Wolff, Håkan Wallin & Ulla Vogel. (2018) Physicochemical predictors of Multi‐Walled Carbon Nanotube–induced pulmonary histopathology and toxicity one year after pulmonary deposition of 11 different Multi‐Walled Carbon Nanotubes in mice. Basic & Clinical Pharmacology & Toxicology 124:2, pages 211-227.
Crossref
Justine Nicholas, Hao Chen, Keira Liu, Indu Venu, Donald Bolser, Navid B. Saleh, Joseph H. BisesiJrJr, William Castleman, P. Lee Ferguson & Tara Sabo-Attwood. (2019) Utilization of near infrared fluorescence imaging to track and quantify the pulmonary retention of single-walled carbon nanotubes in mice. NanoImpact 14, pages 100167.
Crossref
L. Cody Smith, Santiago Moreno, Sarah Robinson, Marlene Orandle, Dale W. Porter, Dipesh Das, Navid B. Saleh & Tara Sabo-Attwood. (2019) Multi-walled carbon nanotubes inhibit estrogen receptor expression in vivo and in vitro through transforming growth factor beta1. NanoImpact 14, pages 100152.
Crossref
Wen Zheng, Walter McKinney, Michael L. Kashon, Daniel Pan, Vincent Castranova & Hong Kan. (2018) The effects of inhaled multi-walled carbon nanotubes on blood pressure and cardiac function. Nanoscale Research Letters 13:1.
Crossref
Emanuela Felley-Bosco & Marion MacFarlane. (2018) Asbestos: Modern Insights for Toxicology in the Era of Engineered Nanomaterials. Chemical Research in Toxicology 31:10, pages 994-1008.
Crossref
Sébastien Bau, Soleiman Bourrous, François Gaie-Levrel & Olivier Witschger. (2018) Characterization of aerosols generated from nine nanomaterial powders: reliability with regard to in vivo inhalation toxicology studies. Journal of Nanoparticle Research 20:10.
Crossref
William Kyle Mandler, Timothy R Nurkiewicz, Dale W Porter, Eric E Kelley & Ivan Mark Olfert. (2018) Microvascular Dysfunction Following Multiwalled Carbon Nanotube Exposure Is Mediated by Thrombospondin-1 Receptor CD47. Toxicological Sciences 165:1, pages 90-99.
Crossref
P.A. Stapleton, C.R. McBride, J. Yi, A.B. Abukabda & T.R. Nurkiewicz. (2018) Estrous cycle-dependent modulation of in vivo microvascular dysfunction after nanomaterial inhalation. Reproductive Toxicology 78, pages 20-28.
Crossref
John A Lynch, Quinn T Birch, Thomas H Ridgway & M Eileen Birch. (2018) Quantification of Carbon Nanotubes by Raman Analysis. Annals of Work Exposures and Health 62:5, pages 604-612.
Crossref
Matthew M. Dahm, Mary K. Schubauer-Berigan, Douglas E. Evans, M. Eileen Birch, Stephen Bertke, John D. Beard, Aaron Erdely, Joseph E. Fernback, Robert R. Mercer & Sergey A. Grinshpun. (2018) Exposure assessments for a cross-sectional epidemiologic study of US carbon nanotube and nanofiber workers. International Journal of Hygiene and Environmental Health 221:3, pages 429-440.
Crossref
Sotirios I. Sinis, Chrissi Hatzoglou, Konstantinos I. Gourgoulianis & Sotirios G. Zarogiannis. (2018) Carbon Nanotubes and Other Engineered Nanoparticles Induced Pathophysiology on Mesothelial Cells and Mesothelial Membranes. Frontiers in Physiology 9.
Crossref
Shoji Fukushima, Tatsuya Kasai, Yumi Umeda, Makoto Ohnishi, Toshiaki Sasaki & Michiharu Matsumoto. (2018) Carcinogenicity of multi‐walled carbon nanotubes: challenging issue on hazard assessment. Journal of Occupational Health 60:1, pages 10-30.
Crossref
Robert R. Mercer, James F. Scabilloni, Liying Wang, Lori A. Battelli, James M. Antonini, Jenny R. Roberts, Yong Qian, Jennifer D. Sisler, Vincent Castranova, Dale W. Porter & Ann F. Hubbs. (2017) The Fate of Inhaled Nanoparticles: Detection and Measurement by Enhanced Dark-field Microscopy. Toxicologic Pathology 46:1, pages 28-46.
Crossref
Raymond F. HamiltonJr.Jr., Shuji Tsuruoka, Nianqiang Wu, Michael Wolfarth, Dale W Porter, Melisa Bunderson-Schelvan & Andrij Holian. (2017) Length, but Not Reactive Edges, of Cup-stack MWCNT Is Responsible for Toxicity and Acute Lung Inflammation. Toxicologic Pathology 46:1, pages 62-74.
Crossref
Jing Wang, Lukas Schlagenhauf & Ari Setyan. (2017) Transformation of the released asbestos, carbon fibers and carbon nanotubes from composite materials and the changes of their potential health impacts. Journal of Nanobiotechnology 15:1.
Crossref
Luna Rahman, Nicklas Raun Jacobsen, Syed Abdul Aziz, Dongmei Wu, Andrew Williams, Carole L. Yauk, Paul White, Hakan Wallin, Ulla Vogel & Sabina Halappanavar. (2017) Multi-walled carbon nanotube-induced genotoxic, inflammatory and pro-fibrotic responses in mice: Investigating the mechanisms of pulmonary carcinogenesis. Mutation Research/Genetic Toxicology and Environmental Mutagenesis 823, pages 28-44.
Crossref
Li-Ming Lo, Candace S.-J. Tsai, William A. Heitbrink, Kevin H. Dunn, Jennifer Topmiller & Michael Ellenbecker. (2017) Particle emissions from laboratory activities involving carbon nanotubes. Journal of Nanoparticle Research 19:8.
Crossref
Caterina Ledda, Chiara Costa, Serena Matera, Beatrice Puglisi, Valentina Costanzo, Massimo Bracci, Concettina Fenga, Venerando Rapisarda & Carla Loreto. (2017) Immunomodulatory effects in workers exposed to naturally occurring asbestos fibers. Molecular Medicine Reports 15:5, pages 3372-3378.
Crossref
Jette Bornholdt, Anne Thoustrup Saber, Berit Lilje, Mette Boyd, Mette Jørgensen, Yun Chen, Morana Vitezic, Nicklas Raun Jacobsen, Sarah Søs Poulsen, Trine Berthing, Simon Bressendorff, Kristoffer Vitting-Seerup, Robin Andersson, Karin Sørig Hougaard, Carole L. Yauk, Sabina Halappanavar, Håkan Wallin, Ulla Vogel & Albin Sandelin. (2017) Identification of Gene Transcription Start Sites and Enhancers Responding to Pulmonary Carbon Nanotube Exposure in Vivo . ACS Nano 11:4, pages 3597-3613.
Crossref
Mario J. AragonLauren TopperChristina R. TylerBethany SanchezKatherine ZychowskiTamara YoungGuy HerbertPamela HallAaron ErdelyTracy EyeLindsey BishopSamantha A. Saunders, Pretal P. Muldoon, Andrew K. Ottens & Matthew J. Campen. (2017) Serum-borne bioactivity caused by pulmonary multiwalled carbon nanotubes induces neuroinflammation via blood–brain barrier impairment. Proceedings of the National Academy of Sciences 114:10.
Crossref
Quincy A. Hathaway, Cody E. NicholsDanielle L. Shepherd, Phoebe A. StapletonSarah L. McLaughlin, Janelle C. StrickerStephanie L. RellickMark V. PintiAlaeddin B. AbukabdaCarroll R. McBrideJinghai YiSeth M. Stine, Timothy R. Nurkiewicz & John M. Hollander. (2017) Maternal-engineered nanomaterial exposure disrupts progeny cardiac function and bioenergetics. American Journal of Physiology-Heart and Circulatory Physiology 312:3, pages H446-H458.
Crossref
M. Pacurari, I. May & P. B. Tchounwou. (2017) Effects of lipopolysaccharide, multiwalled carbon nantoubes, and the combination on lung alveolar epithelial cells. Environmental Toxicology 32:2, pages 445-455.
Crossref
Pia Kinaret, Marit Ilves, Vittorio Fortino, Elina Rydman, Piia Karisola, Anna Lähde, Joonas Koivisto, Jorma Jokiniemi, Henrik Wolff, Kai Savolainen, Dario Greco & Harri Alenius. (2017) Inhalation and Oropharyngeal Aspiration Exposure to Rod-Like Carbon Nanotubes Induce Similar Airway Inflammation and Biological Responses in Mouse Lungs. ACS Nano 11:1, pages 291-303.
Crossref
Jie Dong & Qiang Ma. (2016) Myofibroblasts and lung fibrosis induced by carbon nanotube exposure. Particle and Fibre Toxicology 13:1.
Crossref
Xiao He. 2016. Toxicology of Nanomaterials. Toxicology of Nanomaterials 151 198 .
Angelina Cayuela, Sandra Benítez-Martínez & M. Laura Soriano. (2016) Carbon nanotools as sorbents and sensors of nanosized objects: The third way of analytical nanoscience and nanotechnology. TrAC Trends in Analytical Chemistry 84, pages 172-180.
Crossref
Duck-Hyun Kim, Jayesh Puthumana, Hye-Min Kang, Min-Chul Lee, Chang-Bum Jeong, Jeonghoon Han, Dae-Sik Hwang, Il-Chan Kim, Jin Wuk Lee & Jae-Seong Lee. (2016) Adverse effects of MWCNTs on life parameters, antioxidant systems, and activation of MAPK signaling pathways in the copepod Paracyclopina nana. Aquatic Toxicology 179, pages 115-124.
Crossref
Daniel V. Christophersen, Nicklas R. Jacobsen, Maria H.G. Andersen, Shea P. Connell, Kenneth K. Barfod, Morten B. Thomsen, Mark R. Miller, Rodger Duffin, Jens Lykkesfeldt, Ulla Vogel, Håkan Wallin, Steffen Loft, Martin Roursgaard & Peter Møller. (2016) Cardiovascular health effects of oral and pulmonary exposure to multi-walled carbon nanotubes in ApoE-deficient mice. Toxicology 371, pages 29-40.
Crossref
Katsuhide Fujita, Makiko Fukuda, Shigehisa Endoh, Junko Maru, Haruhisa Kato, Ayako Nakamura, Naohide Shinohara, Kanako Uchino & Kazumasa Honda. (2016) Pulmonary and pleural inflammation after intratracheal instillation of short single-walled and multi-walled carbon nanotubes. Toxicology Letters 257, pages 23-37.
Crossref
Masumi Suzui, Mitsuru Futakuchi, Katsumi Fukamachi, Takamasa Numano, Mohamed Abdelgied, Satoru Takahashi, Makoto Ohnishi, Toyonori Omori, Shuji Tsuruoka, Akihiko Hirose, Jun Kanno, Yoshimitsu Sakamoto, David B. Alexander, William T. Alexander, Xu Jiegou & Hiroyuki Tsuda. (2016) Multiwalled carbon nanotubes intratracheally instilled into the rat lung induce development of pleural malignant mesothelioma and lung tumors. Cancer Science 107:7, pages 924-935.
Crossref
Yke Jildouw Arnoldussen, Kristine Haugen Anmarkrud, Vidar Skaug, Ron N. Apte, Aage Haugen & Shanbeh Zienolddiny. (2016) Effects of carbon nanotubes on intercellular communication and involvement of IL-1 genes. Journal of Cell Communication and Signaling 10:2, pages 153-162.
Crossref
Liying Wang, Donna C. Davidson, Vincent Castranova & Yon Rojanasakul. 2016. Biomedical Applications and Toxicology of Carbon Nanomaterials. Biomedical Applications and Toxicology of Carbon Nanomaterials 163 194 .
Todd A. Stueckle, Linda Sargent, Yon Rojanasakul & Liying Wang. 2016. Biomedical Applications and Toxicology of Carbon Nanomaterials. Biomedical Applications and Toxicology of Carbon Nanomaterials 267 332 .
Linus Ludvigsson, Christina Isaxon, Patrik T. Nilsson, Hakan Tinnerberg, Maria E. Messing, Jenny Rissler, Vidar Skaug, Anders Gudmundsson, Mats Bohgard, Maria Hedmer & Joakim Pagels. (2016) Carbon Nanotube Emissions from Arc Discharge Production: Classification of Particle Types with Electron Microscopy and Comparison with Direct Reading Techniques. Annals of Occupational Hygiene 60:4, pages 493-512.
Crossref
Joanna M. Kreitinger, Celine A. Beamer & David M. Shepherd. (2016) Environmental Immunology: Lessons Learned from Exposure to a Select Panel of Immunotoxicants. The Journal of Immunology 196:8, pages 3217-3225.
Crossref
Anna A. Shvedova, Naveena Yanamala, Elena R. Kisin, Timur O. Khailullin, M. Eileen Birch & Liliya M. Fatkhutdinova. (2016) Integrated Analysis of Dysregulated ncRNA and mRNA Expression Profiles in Humans Exposed to Carbon Nanotubes. PLOS ONE 11:3, pages e0150628.
Crossref
Jin Wuk Lee, Eun-Ji Won, Hye-Min Kang, Dae-Sik Hwang, Duck-Hyun Kim, Rae-Kwon Kim, Su-Jae Lee & Jae-Seong Lee. (2016) Effects of multi-walled carbon nanotube (MWCNT) on antioxidant depletion, the ERK signaling pathway, and copper bioavailability in the copepod (Tigriopus japonicus). Aquatic Toxicology 171, pages 9-19.
Crossref
Jonathan H. Shannahan & Jared M. Brown. 2016. Biological Effects of Fibrous and Particulate Substances. Biological Effects of Fibrous and Particulate Substances 149 162 .
Sanae Kanno. 2016. Biological Effects of Fibrous and Particulate Substances. Biological Effects of Fibrous and Particulate Substances 27 50 .
Brandi N. Snyder-Talkington, Chunlin Dong, Linda M. Sargent, Dale W. Porter, Lauren M. Staska, Ann F. Hubbs, Rebecca Raese, Walter McKinney, Bean T. Chen, Lori Battelli, David T. Lowry, Steven H. Reynolds, Vincent Castranova, Yong Qian & Nancy L. Guo. (2016) mRNAs and miRNAs in whole blood associated with lung hyperplasia, fibrosis, and bronchiolo-alveolar adenoma and adenocarcinoma after multi-walled carbon nanotube inhalation exposure in mice. Journal of Applied Toxicology 36:1, pages 161-174.
Crossref
Tatsuya Kasai, Yumi Umeda, Makoto Ohnishi, Takashi Mine, Hitomi Kondo, Tetsuya Takeuchi, Michiharu Matsumoto & Shoji Fukushima. (2016) Lung carcinogenicity of inhaled multi-walled carbon nanotube in rats. Particle and Fibre Toxicology 13:1.
Crossref
Mutlay Sayan & Brooke T. Mossman. (2016) The NLRP3 inflammasome in pathogenic particle and fibre-associated lung inflammation and diseases. Particle and Fibre Toxicology 13:1.
Crossref
Giulia Vietti, Dominique Lison & Sybille van den Brule. (2016) Mechanisms of lung fibrosis induced by carbon nanotubes: towards an Adverse Outcome Pathway (AOP). Particle and Fibre Toxicology 13:1.
Crossref
Phoebe A. Stapleton, Alaeddin B. Abukabda, Steven L. Hardy & Timothy R. Nurkiewicz. (2015) Xenobiotic pulmonary exposure and systemic cardiovascular response via neurological links. American Journal of Physiology-Heart and Circulatory Physiology 309:10, pages H1609-H1620.
Crossref
Drew Thompson, Sheng-Chieh Chen, Jing Wang & David Y.H. Pui. (2015) Aerosol Emission Monitoring and Assessment of Potential Exposure to Multi-walled Carbon Nanotubes in the Manufacture of Polymer Nanocomposites. Annals of Occupational Hygiene 59:9, pages 1135-1151.
Crossref
P.A. Stapleton, C.R. McBride, J. Yi & T.R. Nurkiewicz. (2015) Uterine microvascular sensitivity to nanomaterial inhalation: An in vivo assessment. Toxicology and Applied Pharmacology 288:3, pages 420-428.
Crossref
Jing Wang, Yeon Kyoung Bahk, Sheng-Chieh Chen & David Y.H. Pui. (2015) Characteristics of airborne fractal-like agglomerates of carbon nanotubes. Carbon 93, pages 441-450.
Crossref
Enrico Bergamaschi, Finbarr Murphy, Craig A. Poland, Martin Mullins, Anna L. Costa, Eamonn McAlea, Lang Tran & Syed A. M. Tofail. (2015) Impact and effectiveness of risk mitigation strategies on the insurability of nanomaterial production: evidences from industrial case studies. Wiley Interdisciplinary Reviews: Nanomedicine and Nanobiotechnology 7:6, pages 839-855.
Crossref
Maria Hedmer, Linus Ludvigsson, Christina Isaxon, Patrik T. Nilsson, Vidar Skaug, Mats Bohgard, Joakim H. Pagels, Maria E. Messing & Håkan Tinnerberg. (2015) Detection of Multi-walled Carbon Nanotubes and Carbon Nanodiscs on Workplace Surfaces at a Small-Scale Producer. Annals of Occupational Hygiene 59:7, pages 836-852.
Crossref
Amy L. Mihalchik, Weiqiang Ding, Dale W. Porter, Colleen McLoughlin, Diane Schwegler-Berry, Jennifer D. Sisler, Aleksandr B. Stefaniak, Brandi N. Snyder-Talkington, Rodolfo Cruz-Silva, Mauricio Terrones, Shuji Tsuruoka, Morinobu Endo, Vincent Castranova & Yong Qian. (2015) Effects of nitrogen-doped multi-walled carbon nanotubes compared to pristine multi-walled carbon nanotubes on human small airway epithelial cells. Toxicology 333, pages 25-36.
Crossref
Russell P. Valle, Tony Wu & Yi Y. Zuo. (2015) Biophysical Influence of Airborne Carbon Nanomaterials on Natural Pulmonary Surfactant. ACS Nano 9:5, pages 5413-5421.
Crossref
Yke Jildouw Arnoldussen, Asbjørn Skogstad, Vidar Skaug, Mayes Kasem, Aage Haugen, Nathalie Benker, Stephan Weinbruch, Ron N. Apte & Shanbeh Zienolddiny. (2015) Involvement of IL-1 genes in the cellular responses to carbon nanotube exposure. Cytokine 73:1, pages 128-137.
Crossref
Valeria Amenta & Karin Aschberger. (2014) Carbon nanotubes: potential medical applications and safety concerns. WIREs Nanomedicine and Nanobiotechnology 7:3, pages 371-386.
Crossref
Jie Dong, Dale W. Porter, Lori A. Batteli, Michael G. Wolfarth, Diana L. Richardson & Qiang Ma. (2014) Pathologic and molecular profiling of rapid-onset fibrosis and inflammation induced by multi-walled carbon nanotubes. Archives of Toxicology 89:4, pages 621-633.
Crossref
Julian Dymacek, Brandi N. Snyder-Talkington, Dale W. Porter, Robert R. Mercer, Michael G. Wolfarth, Vincent Castranova, Yong Qian & Nancy L. Guo. (2015) mRNA and miRNA Regulatory Networks Reflective of Multi-Walled Carbon Nanotube-Induced Lung Inflammatory and Fibrotic Pathologies in Mice. Toxicological Sciences 144:1, pages 51-64.
Crossref
Sarah S. Poulsen, Anne T. Saber, Alicja Mortensen, Józef Szarek, Dongmei Wu, Andrew Williams, Ole Andersen, Nicklas R. Jacobsen, Carole L. Yauk, Håkan Wallin, Sabina Halappanavar & Ulla Vogel. (2015) Changes in cholesterol homeostasis and acute phase response link pulmonary exposure to multi-walled carbon nanotubes to risk of cardiovascular disease. Toxicology and Applied Pharmacology 283:3, pages 210-222.
Crossref
Raymond Derk, Donna C. Davidson, Amruta Manke, Todd A. Stueckle, Yon Rojanasakul & Liying Wang. (2015) Potential in vitro model for testing the effect of exposure to nanoparticles on the lung alveolar epithelial barrier. Sensing and Bio-Sensing Research 3, pages 38-45.
Crossref
Shuji Tsuruoka, Hidetoshi Matsumoto, Kenichi Koyama, Eiji Akiba, Takashi Yanagisawa, Flemming R. Cassee, Naoto Saito, Yuki Usui, Shinsuke Kobayashi, Dale W. Porter, Vincent Castranova & Morinobu Endo. (2015) Radical scavenging reaction kinetics with multiwalled carbon nanotubes. Carbon 83, pages 232-239.
Crossref
Brandi N. Snyder-Talkington, Chunlin Dong, Xiangyi Zhao, Julian Dymacek, Dale W. Porter, Michael G. Wolfarth, Vincent Castranova, Yong Qian & Nancy L. Guo. (2015) Multi-walled carbon nanotube-induced gene expression in vitro: Concordance with in vivo studies. Toxicology 328, pages 66-74.
Crossref
Angelina Cayuela, M. Laura Soriano & Miguel Valcárcel. (2015) Photoluminescent carbon dot sensor for carboxylated multiwalled carbon nanotube detection in river water. Sensors and Actuators B: Chemical 207, pages 596-601.
Crossref
Carsten Købler, Sarah S. Poulsen, Anne T. Saber, Nicklas R. Jacobsen, Håkan Wallin, Carole L. Yauk, Sabina Halappanavar, Ulla Vogel, Klaus Qvortrup & Kristian Mølhave. (2015) Time-Dependent Subcellular Distribution and Effects of Carbon Nanotubes in Lungs of Mice. PLOS ONE 10:1, pages e0116481.
Crossref
Jaya Singhal, Surinder P. Singh, Stalin Karuppiah & Alok K. Pandey. (2015) Bucky Tubes Induce Oxidative Stress Mediated Cell Death in Human Lung Cells. BioMed Research International 2015, pages 1-13.
Crossref
Robert R. Mercer & James D. Crapo. 2015. Comparative Biology of the Normal Lung. Comparative Biology of the Normal Lung 93 104 .
Elina M Rydman, Marit Ilves, Antti J Koivisto, Pia A S Kinaret, Vittorio Fortino, Terhi S Savinko, Maili T Lehto, Ville Pulkkinen, Minnamari Vippola, Kaarle J Hämeri, Sampsa Matikainen, Henrik Wolff, Kai M Savolainen, Dario Greco & Harri Alenius. (2014) Inhalation of rod-like carbon nanotubes causes unconventional allergic airway inflammation. Particle and Fibre Toxicology 11:1.
Crossref
Carola Endes, Otmar Schmid, Calum Kinnear, Silvana Mueller, Sandra Camarero-Espinosa, Dimitri Vanhecke, E Johan Foster, Alke Petri-Fink, Barbara Rothen-Rutishauser, Christoph Weder & Martin JD Clift. (2014) An in vitro testing strategy towards mimicking the inhalation of high aspect ratio nanoparticles. Particle and Fibre Toxicology 11:1.
Crossref
Peter Møller, Daniel Vest Christophersen, Ditte Marie Jensen, Ali Kermanizadeh, Martin Roursgaard, Nicklas Raun Jacobsen, Jette Gjerke Hemmingsen, Pernille Høgh Danielsen, Yi Cao, Kim Jantzen, Henrik Klingberg, Lars-Georg Hersoug & Steffen Loft. (2014) Role of oxidative stress in carbon nanotube-generated health effects. Archives of Toxicology 88:11, pages 1939-1964.
Crossref
Gabrielle M. Rogers-Nieman & Cerasela Zoica Dinu. (2014) Therapeutic applications of carbon nanotubes: opportunities and challenges. Wiley Interdisciplinary Reviews: Nanomedicine and Nanobiotechnology 6:4, pages 327-337.
Crossref
Bertrand Czarny, Dominique Georgin, Fannely Berthon, Gael Plastow, Mathieu Pinault, Gilles Patriarche, Aurélie Thuleau, Martine Mayne L’Hermite, Frédéric Taran & Vincent Dive. (2014) Carbon Nanotube Translocation to Distant Organs after Pulmonary Exposure: Insights from in Situ 14 C-Radiolabeling and Tissue Radioimaging . ACS Nano 8:6, pages 5715-5724.
Crossref
. (2014) Exposure and Emission Measurements During Production, Purification, and Functionalization of Arc-Discharge-Produced Multi-walled Carbon Nanotubes. The Annals of Occupational Hygiene.
Crossref
Matthew Boyles, Linda Stoehr, Paul Schlinkert, Martin Himly & Albert Duschl. (2014) The Significance and Insignificance of Carbon Nanotube-Induced Inflammation. Fibers 2:1, pages 45-74.
Crossref
Hedwig M Braakhuis, Margriet VDZ Park, Ilse Gosens, Wim H De Jong & Flemming R Cassee. (2014) Physicochemical characteristics of nanomaterials that affect pulmonary inflammation. Particle and Fibre Toxicology 11:1, pages 18.
Crossref
Cinzia Lucia Ursini, Delia Cavallo, Anna Maria Fresegna, Aureliano Ciervo, Raffaele Maiello, Giuliana Buresti, Stefano Casciardi, Stefano Bellucci & Sergio Iavicoli. (2014) Differences in Cytotoxic, Genotoxic, and Inflammatory Response of Bronchial and Alveolar Human Lung Epithelial Cells to Pristine and COOH-Functionalized Multiwalled Carbon Nanotubes. BioMed Research International 2014, pages 1-14.
Crossref
Raymond F HamiltonJrJr, Zheqiong Wu, Somenath Mitra, Pamela K Shaw & Andrij Holian. (2013) Effect of MWCNT size, carboxylation, and purification on in vitro and in vivo toxicity, inflammation and lung pathology. Particle and Fibre Toxicology 10:1.
Crossref
A. E. Nel. (2013) Implementation of alternative test strategies for the safety assessment of engineered nanomaterials. Journal of Internal Medicine 274:6, pages 561-577.
Crossref
Ken Donaldson, Craig A. Poland, Fiona A. Murphy, Marion MacFarlane, Tatyana Chernova & Anja Schinwald. (2013) Pulmonary toxicity of carbon nanotubes and asbestos — Similarities and differences. Advanced Drug Delivery Reviews 65:15, pages 2078-2086.
Crossref
Phoebe A. Stapleton, Valerie C. Minarchick, Jinghai Yi, Kevin Engels, Carroll R. McBride & Timothy R. Nurkiewicz. (2013) Maternal engineered nanomaterial exposure and fetal microvascular function: does the Barker hypothesis apply?. American Journal of Obstetrics and Gynecology 209:3, pages 227.e1-227.e11.
Crossref
Ann F. Hubbs, Linda M. Sargent, Dale W. Porter, Tina M. Sager, Bean T. Chen, David G. Frazer, Vincent Castranova, Krishnan Sriram, Timothy R. Nurkiewicz, Steven H. Reynolds, Lori A. Battelli, Diane Schwegler-Berry, Walter McKinney, Kara L. Fluharty & Robert R. Mercer. (2013) Nanotechnology: Toxicologic Pathology. Toxicologic Pathology 41:2, pages 395-409.
Crossref
Yumi UMEDA, Tatsuya KASAI, Misae SAITO, Hitomi KONDO, Tadao TOYA, Shigetoshi AISO, Hirokazu OKUDA, Tomoshi NISHIZAWA & Shoji FUKUSHIMA. (2013) Two-week Toxicity of Multi-walled Carbon Nanotubes by Whole-body Inhalation Exposure in Rats. Journal of Toxicologic Pathology 26:2, pages 131-140.
Crossref
Yasuo MORIMOTO, Masanori HORIE, Schinichi KITAJIMA, Shoji FUKUSHIMA & Toru TAKEBAYASHI. (2013) Comparison of Data between Intratracheal Instillation and Inhalation Studies for Estimation of Harmful Effects of Manufactured Nanomaterials工業用ナノ材料の有害性評価に向けた気管内投与試験と吸入ばく露試験の所見の比較. Nippon Eiseigaku Zasshi (Japanese Journal of Hygiene) 68:3, pages 161-167.
Crossref
Ann Hubbs, Dale W. Porter, Robert Mercer, Vincent Castranova, Linda Sargent & Krishnan Sriram. 2013. Haschek and Rousseaux's Handbook of Toxicologic Pathology. Haschek and Rousseaux's Handbook of Toxicologic Pathology 1373 1419 .
Phoebe Stapleton, Valerie Minarchick, Amy Cumpston, Walter McKinney, Bean Chen, Tina Sager, David Frazer, Robert Mercer, James Scabilloni, Michael Andrew, Vincent Castranova & Timothy Nurkiewicz. (2012) Impairment of Coronary Arteriolar Endothelium-Dependent Dilation after Multi-Walled Carbon Nanotube Inhalation: A Time-Course Study. International Journal of Molecular Sciences 13:12, pages 13781-13803.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.