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DOI | 10.1007/s00204-016-1717-8 |
Expert consensus on an in vitro approach to assess pulmonary fibrogenic potential of aerosolized nanomaterials | |
Clippinger, Amy J.1; Ahluwalia, Arti2; Allen, David3; Bonner, James C.4; Casey, Warren5; Castranova, Vincent6; David, Raymond M.7; Halappanavar, Sabina8; Hotchkiss, Jon A.9; Jarabek, Annie M.10; Maier, Monika11; Polk, William3; Rothen-Rutishauser, Barbara12; Sayes, Christie M.13; Sayre, Phil14; Sharma, Monita1; Stone, Vicki15 | |
发表日期 | 2016-07-01 |
ISSN | 0340-5761 |
卷号 | 90期号:7页码:1769-1783 |
英文摘要 | The increasing use of multi-walled carbon nanotubes (MWCNTs) in consumer products and their potential to induce adverse lung effects following inhalation has lead to much interest in better understanding the hazard associated with these nanomaterials (NMs). While the current regulatory requirement for substances of concern, such as MWCNTs, in many jurisdictions is a 90-day rodent inhalation test, the monetary, ethical, and scientific concerns associated with this test led an international expert group to convene in Washington, DC, USA, to discuss alternative approaches to evaluate the inhalation toxicity of MWCNTs. Pulmonary fibrosis was identified as a key adverse outcome linked to MWCNT exposure, and recommendations were made on the design of an in vitro assay that is predictive of the fibrotic potential of MWCNTs. While fibrosis takes weeks or months to develop in vivo, an in vitro test system may more rapidly predict fibrogenic potential by monitoring pro-fibrotic mediators (e.g., cytokines and growth factors). Therefore, the workshop discussions focused on the necessary specifications related to the development and evaluation of such an in vitro system. Recommendations were made for designing a system using lung-relevant cells co-cultured at the air-liquid interface to assess the pro-fibrogenic potential of aerosolized MWCNTs, while considering human-relevant dosimetry and NM life cycle transformations. The workshop discussions provided the fundamental design components of an air-liquid interface in vitro test system that will be subsequently expanded to the development of an alternative testing strategy to predict pulmonary toxicity and to generate data that will enable effective risk assessment of NMs. |
英文关键词 | Inhalation toxicity;Multi-walled carbon nanotubes;MWCNTs;In vitro testing strategies;Regulatory risk assessment;Pulmonary fibrosis |
语种 | 英语 |
WOS记录号 | WOS:000377720700021 |
来源期刊 | ARCHIVES OF TOXICOLOGY
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来源机构 | 美国环保署 |
文献类型 | 期刊论文 |
条目标识符 | http://gcip.llas.ac.cn/handle/2XKMVOVA/61907 |
作者单位 | 1.PETA Int Sci Consortium Ltd, London, England; 2.Univ Pisa, Pisa, Italy; 3.Integrated Lab Syst Inc, Contractor Supporting Natl Toxicol Program Intera, Res Triangle Pk, NC USA; 4.N Carolina State Univ, Raleigh, NC 27695 USA; 5.NTP Interagcy Ctr Evaluat Alternat Toxicol Method, Raleigh, NC USA; 6.W Virginia Univ, Morgantown, WV 26506 USA; 7.BASF Corp, Florham Pk, NJ USA; 8.Hlth Canada, Environm & Radiat Hlth Sci Directorate, Ottawa, ON K1A 0L2, Canada; 9.Dow Chem Co USA, Midland, MI 48674 USA; 10.US EPA, Res Triangle Pk, NC 27711 USA; 11.Evon Ind AG, Hanau, Germany; 12.Univ Fribourg, Adolphe Merkle Inst, CH-1700 Fribourg, Switzerland; 13.Baylor Univ, Dept Environm Sci, Waco, TX 76798 USA; 14.NanoRisk Analyt LLC, Washington, MD USA; 15.Heriot Watt Univ, Edinburgh, Midlothian, Scotland |
推荐引用方式 GB/T 7714 | Clippinger, Amy J.,Ahluwalia, Arti,Allen, David,et al. Expert consensus on an in vitro approach to assess pulmonary fibrogenic potential of aerosolized nanomaterials[J]. 美国环保署,2016,90(7):1769-1783. |
APA | Clippinger, Amy J..,Ahluwalia, Arti.,Allen, David.,Bonner, James C..,Casey, Warren.,...&Stone, Vicki.(2016).Expert consensus on an in vitro approach to assess pulmonary fibrogenic potential of aerosolized nanomaterials.ARCHIVES OF TOXICOLOGY,90(7),1769-1783. |
MLA | Clippinger, Amy J.,et al."Expert consensus on an in vitro approach to assess pulmonary fibrogenic potential of aerosolized nanomaterials".ARCHIVES OF TOXICOLOGY 90.7(2016):1769-1783. |
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