Literature DB >> 22584686

The threshold length for fiber-induced acute pleural inflammation: shedding light on the early events in asbestos-induced mesothelioma.

Anja Schinwald1, Fiona A Murphy, Adriele Prina-Mello, Craig A Poland, Fiona Byrne, Dania Movia, James R Glass, Janet C Dickerson, David A Schultz, Chris E Jeffree, William Macnee, Ken Donaldson.   

Abstract

Suspicion has been raised that high aspect ratio nanoparticles or nanofibers might possess asbestos-like pathogenicity. The pleural space is a specific target for disease in individuals exposed to asbestos and by implication of nanofibers. Pleural effects of fibers depends on fiber length, but the key threshold length beyond which adverse effects occur has never been identified till now because all asbestos and vitreous fiber samples are heterogeneously distributed in their length. Nanotechnology advantageously allows for highly defined length distribution of synthetically engineered fibers that enable for in-depth investigation of this threshold length. We utilized the ability to prepare silver nanofibers of five defined length classes to demonstrate a threshold fiber length for acute pleural inflammation. Nickel nanofibers and carbon nanotubes were then used to strengthen the relationship between fiber length and pleural inflammation. A method of intrapleural injection of nanofibers in female C57Bl/6 strain mice was used to deliver the fiber dose, and we then assessed the acute pleural inflammatory response. Chest wall sections were examined by light and scanning electron microscopy to identify areas of lesion; furthermore, cell-nanowires interaction on the mesothelial surface of the parietal pleura in vivo was investigated. Our results showed a clear threshold effect, demonstrating that fibers beyond 4 µm in length are pathogenic to the pleura. The identification of the threshold length for nanofiber-induced pathogenicity in the pleura has important implications for understanding the structure-toxicity relationship for asbestos-induced mesothelioma and consequent risk assessment with the aim to contribute to the engineering of synthetic nanofibers by the adoption of a benign-by-design approach.

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Year:  2012        PMID: 22584686     DOI: 10.1093/toxsci/kfs171

Source DB:  PubMed          Journal:  Toxicol Sci        ISSN: 1096-0929            Impact factor:   4.849


  44 in total

Review 1.  The asbestos-carbon nanotube analogy: An update.

Authors:  Agnes B Kane; Robert H Hurt; Huajian Gao
Journal:  Toxicol Appl Pharmacol       Date:  2018-06-28       Impact factor: 4.219

2.  Electrospinning and Electrospun Nanofibers: Methods, Materials, and Applications.

Authors:  Jiajia Xue; Tong Wu; Yunqian Dai; Younan Xia
Journal:  Chem Rev       Date:  2019-03-27       Impact factor: 60.622

Review 3.  The impact of nanomaterial characteristics on inhalation toxicity.

Authors:  Frank S Bierkandt; Lars Leibrock; Sandra Wagener; Peter Laux; Andreas Luch
Journal:  Toxicol Res (Camb)       Date:  2018-02-01       Impact factor: 3.524

4.  Identification of TGF-β receptor-1 as a key regulator of carbon nanotube-induced fibrogenesis.

Authors:  Anurag Mishra; Todd A Stueckle; Robert R Mercer; Raymond Derk; Yon Rojanasakul; Vincent Castranova; Liying Wang
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2015-08-21       Impact factor: 5.464

5.  Silver Nanoparticles Alter Cell Adhesion and Proliferation of Sheep Primary Mesothelial Cells.

Authors:  Zoi V Arsenopoulou; Ioannis A Taitzoglou; Paschalis-Adam Molyvdas; Konstantinos I Gourgoulianis; Chrissi Hatzoglou; Sotirios G Zarogiannis
Journal:  In Vivo       Date:  2018 Jan-Feb       Impact factor: 2.155

Review 6.  Evaluating the mechanistic evidence and key data gaps in assessing the potential carcinogenicity of carbon nanotubes and nanofibers in humans.

Authors:  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
Journal:  Crit Rev Toxicol       Date:  2016-08-18       Impact factor: 5.635

7.  A commentary on Roggli's "The So-Called Short-Fiber Controversy".

Authors:  David Egilman; Triet Tran
Journal:  Int J Occup Environ Health       Date:  2016-05-24

8.  Quantitative analysis of the role of fiber length on phagocytosis and inflammatory response by alveolar macrophages.

Authors:  Trudy Padmore; Carahline Stark; Leonid A Turkevich; Julie A Champion
Journal:  Biochim Biophys Acta Gen Subj       Date:  2016-10-23       Impact factor: 3.770

9.  Silver nanowire exposure results in internalization and toxicity to Daphnia magna.

Authors:  Leona D Scanlan; Robert B Reed; Alexandre V Loguinov; Philipp Antczak; Abderrahmane Tagmount; Shaul Aloni; Daniel Thomas Nowinski; Pauline Luong; Christine Tran; Nadeeka Karunaratne; Don Pham; Xin Xin Lin; Francesco Falciani; Christopher P Higgins; James F Ranville; Chris D Vulpe; Benjamin Gilbert
Journal:  ACS Nano       Date:  2013-12-05       Impact factor: 15.881

10.  In vitro genotoxicity of asbestos substitutes induced by coupled stimulation of dissolved high-valence ions and oxide radicals.

Authors:  Tingting Huo; Faqin Dong; Jianjun Deng; Qingbi Zhang; Wei Ye; Wei Zhang; Pingping Wang; Dongping Sun
Journal:  Environ Sci Pollut Res Int       Date:  2017-08-01       Impact factor: 4.223

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