Literature DB >> 20934443

Reactive oxygen species and oxidative DNA damage mediate the cytotoxicity of tungsten-nickel-cobalt alloys in vitro.

R M Harris1, T D Williams, N J Hodges, R H Waring.   

Abstract

Tungsten alloys (WA) have been introduced in an attempt to find safer alternatives to depleted uranium and lead munitions. However, it is known that at least one alloy, 91% tungsten-6% nickel-3% cobalt (WNC-91-6-3), causes rhabdomyosarcomas when fragments are implanted in rat muscle. This raises concerns that shrapnel, if not surgically removable, may result in similar tumours in humans. There is therefore a clear need to develop rapid and robust in vitro methods to characterise the toxicity of different WAs in order to identify those that are most likely to be harmful to human health and to guide development of new materials in the future. In the current study we have developed a rapid visual in vitro assay to detect toxicity mediated by individual WA particles in cultured L6-C11 rat muscle cells. Using a variety of techniques (histology, comet assay, caspase-3 activity, oxidation of 2'7'-dichlorofluorescin to measure the production of reactive oxygen species and whole-genome microarrays) we show that, in agreement with the in vivo rat carcinogenicity studies, WNC-91-6-3 was the most toxic of the alloys tested. On dissolution, it produces large amounts of reactive oxygen species, causes significant amounts of DNA damage, inhibits caspase-3, triggers a severe hypoxic response and kills the cells in the immediate vicinity of the alloy particles within 24h. By combining these in vitro data we offer a mechanistic explanation of the effect of this alloy in vivo and show that in vitro tests are a viable alternative for assessing new alloys in the future.
Copyright © 2010 Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20934443     DOI: 10.1016/j.taap.2010.09.020

Source DB:  PubMed          Journal:  Toxicol Appl Pharmacol        ISSN: 0041-008X            Impact factor:   4.219


  8 in total

1.  Inhalation of Tungsten Metal Particulates Alters the Lung and Bone Microenvironments Following Acute Exposure.

Authors:  Kara Miller; Charlotte M McVeigh; Edward B Barr; Guy W Herbert; Quiteria Jacquez; Russell Hunter; Sebastian Medina; Selita N Lucas; Abdul-Mehdi S Ali; Matthew J Campen; Alicia M Bolt
Journal:  Toxicol Sci       Date:  2021-11-24       Impact factor: 4.109

Review 2.  Tungsten: an Emerging Toxicant, Alone or in Combination.

Authors:  Alicia M Bolt; Koren K Mann
Journal:  Curr Environ Health Rep       Date:  2016-12

3.  Comparison of size and geography of airborne tungsten particles in Fallon, Nevada, and Sweet Home, Oregon, with implications for public health.

Authors:  Paul R Sheppard; Brian J Bierman; Kent Rhodes; Gary Ridenour; Mark L Witten
Journal:  J Environ Public Health       Date:  2012-03-14

4.  Cellular accumulation of Cys326-OGG1 protein complexes under conditions of oxidative stress.

Authors:  M P Kaur; E J Guggenheim; C Pulisciano; S Akbar; R M Kershaw; N J Hodges
Journal:  Biochem Biophys Res Commun       Date:  2014-03-27       Impact factor: 3.575

5.  Serum Indicators of Oxidative Damage from Embedded Metal Fragments in a Rat Model.

Authors:  John F Kalinich; Vernieda B Vergara; Jessica F Hoffman
Journal:  Oxid Med Cell Longev       Date:  2022-02-02       Impact factor: 6.543

6.  High urinary tungsten concentration is associated with stroke in the National Health and Nutrition Examination Survey 1999-2010.

Authors:  Jessica Tyrrell; Tamara S Galloway; Ghada Abo-Zaid; David Melzer; Michael H Depledge; Nicholas J Osborne
Journal:  PLoS One       Date:  2013-11-11       Impact factor: 3.240

7.  The Role of the Component Metals in the Toxicity of Military-Grade Tungsten Alloy.

Authors:  Christy A Emond; Vernieda B Vergara; Eric D Lombardini; Steven R Mog; John F Kalinich
Journal:  Toxics       Date:  2015-12-08

Review 8.  Nickel Carcinogenesis Mechanism: DNA Damage.

Authors:  Hongrui Guo; Huan Liu; Hongbin Wu; Hengmin Cui; Jing Fang; Zhicai Zuo; Junliang Deng; Yinglun Li; Xun Wang; Ling Zhao
Journal:  Int J Mol Sci       Date:  2019-09-21       Impact factor: 5.923

  8 in total

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